scieee Science in your language
[en] (orig)

Host-inherent variability influences the transcriptional response of Staphylococcus aureus during in vivo infection.

Abstract

The rise of antibiotic resistance calls for alternative strategies to treat bacterial infections. One attractive strategy is to directly target bacterial virulence factors with anti-virulence drugs. The expression of virulence traits by pathogens is, however, not constitutive but rather induced by the level of stress encountered within the host. Here we use dual RNA sequencing (RNA-seq) to show that intrinsic variability in the level of host resistance greatly affects the pathogen's transcriptome in vivo. Through analysis of the transcriptional profiles of host and pathogen during Staphylococcus aureus infection of two mouse strains, shown to be susceptible (A/J) or resistant (C57BL/6) to the pathogen, we demonstrate that the expression of virulence factors is dependent on the encountered host resistance. We furthermore provide evidence that this dependence strongly influences the efficacy of anti-virulence strategies, highlighting a potential limitation for the implementation of these strategies.

Read accessible full text

Host-inherent variability influences the transcriptional response of Staphylococcus aureus during in vivo infection.

Author: Thänert, Robert,Goldmann, Oliver,Beineke, Andreas,Medina, Eva
Year: 2017
DOI: 10.1038/ncomms14268
Source: https://repository.helmholtz-hzi.de/bitstream/10033/620838/1/Th%c3%a4nert%20et%20al.pdf
ARTICLE
Recei ed 4 Jul 2016 |Accep ed 14 Dec 2016 |Published 3 Feb 2017
Hos -inhe en a iabili y influences he
ansc ip ional esponse o S aphylococcus
au eus du ing in i o in ec ion
Robe Tha
¨ne 1, Oli e Goldmann1, And eas Beineke2& E a Medina1
The ise o an ibio ic esis ance calls o al e na i e s a egies o ea bac e ial in ec ions.
One a ac i e s a egy is o di ec ly a ge bac e ial i ulence ac o s wi h an i- i ulence
d ugs. The exp ession o i ulence ai s by pa hogens is, howe e , no cons i u i e bu a he
induced by he le el o s ess encoun e ed wi hin he hos . He e we use dual RNA sequencing
(RNA-seq) o show ha in insic a iabili y in he le el o hos esis ance g ea ly a ec s he
pa hogen’s ansc ip ome in i o. Th ough analysis o he ansc ip ional p ofiles o hos and
pa hogen du ing S aphylococcus au eus in ec ion o wo mouse s ains, shown o be suscep-
ible (A/J) o esis an (C57BL/6) o he pa hogen, we demons a e ha he exp ession o
i ulence ac o s is dependen on he encoun e ed hos esis ance. We u he mo e p o ide
e idence ha his dependence s ongly influences he e ficacy o an i- i ulence s a egies,
highligh ing a po en ial limi a ion o he implemen a ion o hese s a egies.
DOI: 10.1038/ncomms14268 OPEN
1In ec ion Immunology Resea ch G oup, Helmhol z Cen e o In ec ion Resea ch, Inho ens asse 7, 38124 B aunschweig, Ge many. 2Ins i u e o Pa hology,
Uni e si y o Ve e ina y Medicine Hanno e , Bu
¨n eweg 17, 30559 Hanno e , Ge many. Co espondence and eques s o ma e ials should be add essed o
E.M. (email: e a.medina@helmhol z-hzi.de).
NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions 1
The ise o an imic obial esis ance is one o he mos
challenging p oblems in mode n medicine, causing an
inc ease in mo bidi y and mo ali y associa ed wi h
common bac e ial in ec ions1. While a ailable an ibio ics a e
loosing hei e ec i eness, he in oduc ion o no el bac e icidal
o bac e ios a ic an ibio ics canno be conside ed a long- e m
solu ion because i is e en ually ollowed by he eme gence o
esis an bac e ial clones ha become inc easingly p e alen
unde selec i e d ug p essu e. Consequen ly, he e is a p essing
need o new an i-in ec i e agen s ha do no impose simila
le els o selec ion p essu e on pa hogens as classical an ibio ics. In
his ega d, al e na i e app oaches based on a enua ing bac e ial
pa hogenesis by a ge ing bac e ial i ulence, he so-called
‘an i- i ulence’ s a egies, a e eme ging as p omising ools o
he ea men o in ec ions2.
Bac e ial pa hogens exp ess a la ge epe oi e o di e en
i ulence ac o s o su i e unde he ad e se condi ions imposed
by he hos en i onmen . Thus, an i- i ulence s a egies ha e
been p oposed ha specifically a ge bac e ial oxins p oduced by
he pa hogen o e ade hos de enses3, bac e ial ac o s media ing
adhesion o he hos 4, sec e ion sys ems5as well as egula o y
sys ems6and quo um-sensing signalling7. The key ea u e o
an i- i ulence d ugs is he a enua ion o he pa hogen’s i ulence
o aid clea ance by he hos ’s immune de enses2. These d ugs
seem a ac i e, because i is belie ed ha no killing he pa hogen
di ec ly exe s less selec i e p essu e o he de elopmen o
esis ance2. Howe e , such an app oach will only con e
he apeu ic benefi i he a ge ed i ulence ac o (s) a e ac ually
exp essed by he bac e ium du ing in ec ion and i he na u al
de ense mechanisms o he hos a e s ong enough o clea he
pa hogen, weakened by he an i- i ulence ea men .
Bac e ial pa hogenesis, on he o he hand, is s ongly
influenced by he s eng h o he hos immune de ense. Fo
example, a i ulen mic oo ganisms can be pa hogenic o
immunocomp omised hos s, whe eas i ulen mic oo ganisms
can be nonpa hogenic in immune hos s8. This si ua ion is
u he complica ed by he ac ha , in addi ion o he immune
s a us, inhe en cha ac e is ics o he hos , such as he gene ic
backg ound, significan ly influence he capabili y o he immune
sys em o o e come in ading pa hogens. Thus, he esponse o a
specific pa hogen can ange om weak in suscep ible hos s,
causing se e e in ec ions, o s ong in mo e esis an indi iduals,
esul ing in milde diseases. These di e ences imply ha
pa hogens will encoun e s onge immune p essu e in esis an
han in suscep ible hos s and i ulence ac o s ha a e essen ial
o coun e ac ing a weak immune esponse may no be he same
as hose equi ed unde s onge immune p essu e in esis an
hos s. The e o e, he dependence o i ulence ac o exp ession
on hos esis ance is a po en ial limi a ion o he e ec i eness o
an i- i ulence d ugs.
He e we in es iga e how in insic a iabili y o hos esis ance
o a pa hogen a ec s he exp ession o i ulence ac o s needed o
success ully in ec he hos . We use S aphylococcus au eus,a
human pa hogen ha can cause se e e in asi e in ec ions9and is
no o ious o i s capaci y o de elop an ibio ic esis ances. These
cha ac e is ics make S. au eus one o he mos dange ous and
in ac able in ec ious pa hogens wo ldwide10. Despi e nume ous
a emp s o de elop a accine ha can p e en S. au eus
in ec ions, none o he accine candida es es ed in clinical
ials has succeeded so a 11. This ailu e, in combina ion wi h he
inc ease o an ibio ic esis ance, has lead o an in ensifica ion o
e o s o sea ch o al e na i e ea men app oaches in ecen
yea s. In his ega ds, an i- i ulence s a egies a ge ing c ucial
pa hogenici y ac o s p oduced by S. au eus du ing in ec ion ha e
been p oposed as an a ac i e he apeu ic op ion12,13. Howe e ,
since he ou come o S. au eus in ec ion is s ongly influenced by
he hos ac o s such as acial o igin, age and gene ic makeup14,15,
he sea ch o an i- i ulence a ge s in S. au eus has o con-
side he inhe en a iabili y o he hos esponses o in ec ion.
Simila o humans, a iabili y in he hos esponse o S. au eus
has been also obse ed among di e en inb ed s ains o mice16.
While some mouse s ains ( o example, A/J and DBA/2) a e e y
suscep ible o S. au eus in ec ion, C57BL/6 mice a e highly
esis an and su i e a bac e ial dose ha apidly kills mice om
suscep ible s ains16. These di e ences in he capaci y o con ol
S. au eus in ec ion p o ide a unique expe imen al sys em o
explo e he ex en o which in insic hos a iabili y a ec s he
exp ession o bac e ial i ulence ac o s du ing in ec ion.
In his s udy, we use dual RNA sequencing (RNA-seq), and
wo mouse s ains p e iously shown o display di e en ial
suscep ibili y o S. au eus in ec ion (s ain A/J is suscep ible
and s ain C57BL/6 is esis an )16,17, o in es iga e how he
in insic a iabili y o hos esis ance o a pa hogen a ec s
he exp ession o i ulence ac o s. Dual RNA-seq enables he
simul aneous de e mina ion o he ansc ip ional esponse o
he hos and pa hogen du ing in ec ion and does no equi e
physical sepa a ion o p oka yo ic and euka yo ic RNA since he
sequencing eads can be assigned o he hos o o he pa hogen
genomes by in silico analysis18. Al hough dual RNA-seq has been
success ully applied o cha ac e ize he ansc ip ional signa u e
o bac e ia and hos in se e al in i o in ec ion sys ems14,15,19,20,
he s udy p esen ed he e is one o he fi s using his echnology
in an in i o sys em. Ou esul s demons a e he impac o he
hos gene ic backg ound on he ansc ip ional esponse o S.
au eus du ing in ec ion, and p o ide expe imen al e idence ha
hos -dependen bac e ial exp ession o i ulence ac o s is a
po en ial limi a ion o he e ficacy o an i- i ulence he apies.
Resul s
C57BL/6 and A/J mice di e in hei esis ance o S. au eus.
Fo his s udy, we selec ed wo s ains o mice ha di e in hei
suscep ibili y o S. au eus in ec ion16,17. Whe eas A/J mice a e
e y ulne able o S. au eus, esul ing in a significan ly inc eased
bac e ial g ow h in he kidneys (Fig. 1a) and li e (Fig. 1b) and
a al in ec ion ou come (Fig. 1c), C57BL/6 mice exhibi g ea e
esis ance o S. au eus and we e capable o significan ly es ic
bac e ial g ow h in he kidneys (Fig. 1a) and li e (Fig. 1b) wi h
all mice su i ing (Fig. 1c). The e o e, hese wo mouse s ains
p o ide an excellen ool o in es iga ing he ex en o which
a iabili y in he hos esponse o in ec ion a ec s he
ansc ip ional esponse o S. au eus wi hin he hos .
Dual RNA-seq analysis o S. au eus and in ec ed hos issue.A
dual RNA-seq app oach ha enables simul aneous ansc ip ional
p ofiling o bac e ia and hos issue was used o cha ac e ize he
hos esponse o in ec ion and in es iga e he impac o di e en
le els o hos esis ance on he ansc ip ional esponse o
S. au eus. The schema ic ep esen a ion o he expe imen al
design is shown in Fig. 1d. To al RNA including hos and
pa hogen RNA, was isola ed om he kidneys o A/J and C57BL/
6 mice a 48 h o in ec ion and analysed by Illumina deep
sequencing. Be ween 9 and 21 millions eads we e uniquely
aligned o he e e ence genome o Mus musculus assembly
GRCm38.p3 (GCA_000001635.5), while be ween 32,228 and
5 millions eads we e uniquely mapped o he e ised e e ence
genome o S. au eus s ain 8325-4 ( e . 21).
T ansc ip ome analysis o S. au eus-in ec ed mice. Hie a chical
clus e ing (Supplemen a y Fig. 1a) and p incipal componen
analysis (PCA) (Supplemen a y Fig. 1b) o gene exp ession
da ase s om in ec ed A/J and C57BL/6 mice, as well as o
ARTICLE NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268
2NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions
issue om unin ec ed con ol mice, demons a ed high wi hin-
g oup ep oducibili y and subs an ial be ween-g oup
di e ences. Pai wise compa ison by pe mu a ional mul i a ia e
analysis o a iance (PERMANOVA) e ealed ha he di e ences
be ween all g oups we e s a is ically significan (Po0.05, Supple-
men a y Table 1). Di e en ial gene exp ession analysis using
DESeq2 ( e . 22) iden ified a o al o 5,540 di e en ially exp essed
genes (DEGs) be ween unin ec ed and S. au eus-in ec ed A/J
mice, o which 2,756 we e ound o be up- egula ed in esponse
o in ec ion, while 2,784 we e down egula ed (Supplemen a y
Da a 1). In C57BL/6 mice, 3,559 genes we e di e en ially
exp essed be ween unin ec ed and S. au eus-in ec ed mice, o
which 1,758 we e up egula ed and 1,801 we e down- egula ed in
esponse o in ec ion (Supplemen a y Da a 2). The numbe s o
unique and o e lapping DEGs be ween S. au eus-in ec ed A/J and
C57BL/6 mice a e shown in Fig. 2a.
Func ional classifica ion o he DEGs using KEGG (Kyo o
Encyclopedia o Genes and Genomes) pa hway en ichmen
analysis, e ealed ha a la ge g oup o hos genes wi h inc eased
exp ession in esponse o in ec ion in bo h A/J and C57BL/6 mice
belonged o he g oups ‘cy okine-cy okine ecep o in e ac ion’
and ‘chemokine signalling pa hway’ (Fig. 2b). Pa icula ly, genes
encoding inflamma o y cy okines such as IL-6, IL-1a, IL-1band
TNF-aas well as chemokines in ol ed in he chemoa ac ion o
monocy es/mac ophages such as Cxcl1, Cxcl2 and Cxcl3,
we e up egula ed in bo h A/J and C57BL/6 mice in esponse
o S. au eus in ec ion (Supplemen a y Da a 1 and 2). Also, hos
genes encoding acu e phase p o eins such as Saa1, Saa2,
hap oglobin and he calcium-binding p o eins S100a8 and
S100a9 we e highly induced in in ec ed A/J and C57BL/6 mice.
Al hough he global analysis o he ansc ip ional da a sugges ed
ha a ‘co e’ se o inflamma ion- ela ed genes was highly
exp essed in bo h A/J and C57BL/6 mice in esponse o
S. au eus in ec ion, he a e age old change o exp ession in
his se o genes was ma kedly highe in in ec ed A/J han in
in ec ed C57BL/6 mice (Fig. 2). This sugges ed ha A/J mice
de eloped a mo e in ense sys emic inflamma ion han C57BL/6
mice in esponse o S. au eus in ec ion, which is indica i e o
se e e sepsis leading o dea h. Besides he sys emic hype in-
flamma ion, he inc eased exp ession o he gene encoding
he coagula ion ac i a o issue ac o (F3) and o he gene
encoding he fib inolysis inhibi o PAI-1 (Se pine1) in A/J mice
(Supplemen a y Da a 1), e ealed a ne p o-coagulan s a us ha
is ypical o se e e sepsis23. Al e ed coagula ion, coupled wi h
mic o ascula dys unc ion occu ing du ing sepsis, dec eases
issue pe usion. This leads o pe u ba ions o oxygen supply,
esul ing in issue hypoxia and he ac i a ion o he hypoxia-
inducible ac o alpha encoded by Hi 1a24,25. The signi-
fican induc ion o Hi 1a obse ed in A/J, bu no in C57BL/6
mice, in esponse o in ec ion (Supplemen a y Tables 2 and 3),
indica ed mo e se e e issue hypoxia in he kidneys o in ec ed
A/J mice han in hose o C57BL/6 mice. Fu he mo e, he genes
encoding a ginase 1 (A g1) and a ginase 2 (A g2) we e exp essed
o a g ea e ex en in in ec ed A/J han in in ec ed C57BL/6 mice
10
9
85
4
3
7
7100
80
60
40
20
0
0246
Time o in ec ion (days)
Pe cen su i al
810
A/J
C57BL/6
P < 0.01
*
6
6
A/J C57BL/6 A/J C57BL/6
Resis an
C57BL/6 mice
4 × 107 CFU
S. au eus
4 × 107 CFU
S. au eus
48 h
Kidneys
Dual RNA-seq
Resis an hos
ansc ip ome
Suscep ible hos
ansc ip ome
Valida ion wi h isogenic mu an s
S. au eus
ansc ip ome in
esis an hos
S. au eus
ansc ip ome in
suscep ible hos
Dual RNA-seq
Suscep ible
A/J mice
*
CFU o S. au eus in
kidneys (Log10)
CFU o S. au eus in
li e (Log10)
abc
d
Figu e 1 | A/J and C57BL/6 mice exhibi opposed le els o esis ance o S. au eus.Bac e ial loads in he kidneys (a) and li e (b) o A/J and C57BL/6
mice a 48 h a e in a enous inocula ion wi h 4 107CFU o S. au eus SH1000. Each symbol ep esen s he bac e ial coun s de e mined in an indi idual
mouse and he ho izon al lines ep esen he a e age±s.d. o each mouse s ain. One ep esen a i e expe imen ou o h ee independen expe imen s is
shown (n¼6, - es , *Po0.05). (c) Su i al cu es o A/J and C57BL/6 mice in a enously in ec ed wi h 4 107CFU o S. au eus SH1000 (n¼5, log- ank
es , Po0.01). (d) Schema ic summa y o he expe imen al design o dual RNA-seq analysis. Suscep ible A/J mice and esis an C57BL/6 mice we e
in ec ed in a enously wi h 4 107CFU o S. au eus SH1000, hei kidneys emo ed a 48 h a e bac e ial inocula ion and subjec ed o dual RNA-seq
analysis o simul aneously de e mine he gene exp ession p ofile o he hos and pa hogen in he same sample. The genes di e en ially exp essed by
S. au eus in A/J and C57BL/6 mice we e iden ified and ela ed o he in ec ion-associa ed ansc ip ional esponse o he co esponding mouse s ain. The
e ec o a ge ing a i ulence ac o di e en ially exp essed by S. au eus SH1000 be ween in ec ion o A/J and C57BL/6 mice was also de e mined.
NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268 ARTICLE
NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions 3
(Supplemen a y Da a 1). A ginase can con ibu e o endo helial
cell dys unc ion by deple ing ex a-cellula L-a ginine and ni ic
oxide (NO) bioa ailabili y, leading o endo helial ni ic oxide
syn hase uncoupling and consequen ly o he p oduc ion o high
le els o ha m ul eac i e oxygen species (ROS)26. Taken oge he ,
hese findings sugges ha he mic o-en i onmen in he in ec ed
issue is highly di e en be ween A/J and C57BL/6 mice, which
could significan ly a ec he exp ession o i ulence de e minan s
by S. au eus.
S. au eus ansc ip ome du ing in ec ion o A/J o C57BL/6.
In pa allel, we analysed he ansc ip ome o S. au eus du ing he
in ec ion o esis an C57BL/6 and suscep ible A/J mice o
de e mine he impac o he di e en physiological condi ions
p esen a he si e o in ec ion on he pa hogen’s ansc ip ional
esponse. Hie a chical o dina ion (Supplemen a y Fig. 2a) and
PCA (Supplemen a y Fig. 2b) showed high wi hin-g oup ep o-
ducibili y, while PERMANOVA demons a ed ha he an-
sc ip ional esponse o S. au eus in ec ing suscep ible A/J mice
di e ed significan ly om ha o S. au eus in ec ing esis an
C57BL/6 mice (Supplemen a y Table 2). T ansc ip abundance
was de e mined by no malizing he numbe o aw eads in each
da a se o gene leng h and exp essed as ansc ip s pe Kilobases
pe Million (TPM) (Supplemen a y Da a 3). A o al o 85 genes
we e iden ified as di e en ially exp essed (p obabili y alue
Z0.95) by S. au eus be ween in ec ion o A/J and in ec ion o
C57BL/6 mice using NOISeq (Supplemen a y Da a 4). O hose,
ansc ip s o 20 genes we e mo e abundan in S. au eus in ec ing
A/J mice (Fig. 3a, Table 1, Supplemen a y Table 4), 65 genes
exhibi ed g ea e exp ession in S. au eus du ing in ec ion o
C57BL/6 mice (Fig. 3a, Table 2, Supplemen a y Table 5) and 594
we e exp essed a a simila le el by S. au eus in A/J and C57BL/6
mice (Fig. 3a, Supplemen a y Da a 4).
One o he mos p ominen ope ons exp essed by S. au eus o a
g ea e ex en du ing in ec ion o A/J mice, han du ing in ec ion
o C57BL/6 mice, was he a c ope on, which encodes he a ginine
Inc eased exp ession
A/J A/J
1,722
1,012
Log2 old change
2
Toll-like ecep o signalling pa hway
T cell ecep o signalling pa hway
RIG-I-like ecep o signalling pa hway
Na u al kille media ed cy o oxici y
NOD-like ecep o signalling pa hway
In es inal immune ne wo k o IgA p oduc ion
Hema opoie ic cell lineage
Cy osolic DNA-sensing pa hway
Cy okine-cy okine ecep o in e ac ion
Complemen and coagula ion cascades
Chemokine signalling pa hway
B cell ecep o pa hway
A/J
0 20 40 60 80 100
Numbe o genes
C57BL/6
A/J
C57BL/6
3456
789
C57BL/6 C57BL/6
791
967
1,789
Dec eased exp ession
a
b
Figu e 2 | Gene exp ession analysis o S. au eus-in ec ed kidneys om
A/J and C57BL/6 mice. (a) Venn diag am showing he numbe o DEGs
wi h inc eased (le ) o dec eased ( igh ) exp ession in esponse o
S. au eus in ec ion ha a e unique o common be ween A/J and C57BL/6
mice. (b) Hea map o he mean log
2
- old change o gene exp ession o he
significan ly up- egula ed genes de e mined be ween S. au eus-in ec ed
e sus unin ec ed A/J and C57BL/6 mice wi hin he KEGG ‘immune
sys em’ ca ego y (le pa ). The co esponding numbe s o significan ly
up- egula ed genes in esponse o S. au eus in ec ion in A/J (blue ba s) and
C57BL/6 ( ed ba s) a e shown in he igh pa o he figu e.
Table 1 | DEGs be ween S. au eus in ec ing A/J and C57BL/6 mice wi h g ea e ansc ip abundance du ing in ec ion o A/J
mice.
Locus ag Gene symbol Desc ip ion
SAOUHSC_00845 Hypo he ical
SAOUHSC_02853 Hypo he ical
SAOUHSC_00371 yflT Hypo he ical
SAOUHSC_02964 a cR Hypo he ical
SAOUHSC_01477 Hypo he ical
SAOUHSC_01969 g pP Hypo he ical
SAOUHSC_00101 d m Phosphopen omu ase
SAOUHSC_01181 xynA Hypo he ical
SAOUHSC_02967 a cD A ginine/o ni hine an ipo e
SAOUHSC_01191 pmB 50S ibosomal p o ein L28
SAOUHSC_00686 Hypo he ical
SAOUHSC_01803 aapA Hypo he ical
SAOUHSC_02862 clpL ATP-dependen Clp p o ease, ATP-binding subuni ClpC
SAOUHSC_01403 cspA Cold shock p o ein
SAOUHSC_02850 cidB Hypo he ical
SAOUHSC_01002 qoxB quinol oxidase AA3 subuni II
SAOUHSC_01024 g aF Hypo he ical
SAOUHSC_02702 Hypo he ical
SAOUHSC_02697 cyC Amino acid ABC anspo e ATP-binding p o ein
SAOUHSC_02665 Hypo he ical
DEG, di e en ially exp essed gene.
The comple e da a o he di e en ially exp essed genes wi h highe exp ession by S. au eus du ing in ec ion o he suscep ible A/J mice a e displayed in Supplemen a y Table 4.
ARTICLE NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268
4NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions
deiminase (ADI) sys em (Fig. 3b, Supplemen a y Da a 4). The a c
ope on comp ises he genes coding o a ginine deiminase (a cA),
o ni hine ansca bamylase (a cB), ca bama e kinase (a cC), he
a ginine/o ni hine an ipo e (a cD) and he ansc ip ional
egula o A cR (a cR). These enzymes ca alyse he con e sion
o a ginine o o ni hine, ammonia, and CO
2
, while p oducing
ATP. This no only enables S. au eus o u ilize a ginine as an
ene gy sou ce unde anae obic condi ions27 bu also gene a es
ammonia, which con e s p o ec ion agains acidic s ess28. The
exp ession o all genes o he ADI pa hway was g ea e in
S. au eus du ing in ec ion o A/J han du ing in ec ion o C57BL/
6 mice, e en hough only he di e ences in he le el o a cR and
a cD exp ession eached s a is ical significance ( alse disco e y
a e (FDR) o0.05, NOISeq analysis), (Fig. 3b, Supplemen a y
Da a 4).
O he genes, which we e di e en ially exp essed by S. au eus
du ing in ec ion o A/J and C57BL/6 mice, we e hose encoding
p o eins o amino acid anspo and biosyn hesis. Thus, ans-
c ip s o he genes encoding a hypo he ical cys eine pe mease
( cyC), a hypo he ical lysine pe mease (lysP2), glu ama e syn hase
(gl B, gl D) and homose ine dehyd ogenase (dhoM) we e mo e
abundan in S. au eus du ing in ec ion o C57BL/6 mice han
du ing in ec ion o A/J mice (Table 2). Because de no o amino
acid syn hesis pa hways and amino acids anspo sys ems a e
unde con ol o ca aboli e ep ession in he p esence o p e e ed
ca bon sou ces29 in S. au eus, he inc eased exp ession o he
genes encoding hese pa hways du ing in ec ion o C57BL/6 mice
is consis en wi h mo e se e e nu ien limi a ion in he issue
mic oen i onmen o C57BL/6 han in he issue o A/J mice.
This nu ien limi a ion leads o de- ep ession o genes ha
enable S. au eus o use seconda y ca bon sou ces such as amino
acids. Fu he mo e, genes encoding exop o eases such as
s aphopain (sspB2), se ine p o eases (sspA, splA,splE and splF),
s aphos a in B (sspC), au eolysin (au ) and a cys eine p o ease
(sspB) we e also exp essed by S. au eus o a g ea e ex en in
C57BL/6 han in A/J mice (Fig. 4a). These p o eases can gene a e
pep ides in he ex acellula en i onmen ha can be impo ed by
he bac e ium ia specialized anspo sys ems and used o
e ie e amino acids30. Besides hei ole in me abolism, ex a-
cellula p o eases a e po en i ulence ac o s ha help S. au eus
o e ade he hos immune de enses31,32. O he genes encoding
impo an i ulence ac o s such as he immunodominan
s aphylococcal an igen B (isaB), he ex acellula fib inogen
binding p o ein E b (e b), which is in ol ed in inhibi ion o
phagocy osis33, he po e- o ming cy olysin alpha- oxin (hla), and
he amphipa hic a-helical phenol-soluble modulins psma1, psma2
and psma3, which can kill hos cells by damaging he plasma
memb ane34, we e also exp essed by S. au eus o a highe ex en
du ing in ec ion o C57BL/6 mice (Fig. 4b). These findings
indica e ha S. au eus exp ess g ea e le els o i ulence ac o s
du ing in ec ion o C57BL/6 han du ing in ec ion o A/J mice,
which is mos p obably d i en by he di e en g ow h phase o
he bac e ia in he wo mouse s ains.
The exp ession o hese i ulence ac o s is con olled
by egula o y elemen s such as wo-componen egula o y
sys ems (TCRS) and ansc ip ional egula o y sys ems in
esponse o en i onmen al cues encoun e ed by he bac e ium
du ing in ec ion35. The s aphylococcal quo um-sensing sys em
accesso y gene egula o (ag ) was ound highly exp essed by
S. au eus du ing in ec ion o bo h A/J and C57BL/6 mice. The ag
sys em comp ises wo di e gen ansc ip s, RNAII and RNAIII,
which a e unde he con ol o wo dis inc p omo e s, P2 and P3,
espec i ely36. RNA II encodes he quo um-sensing elemen s
Ag B, Ag D, Ag C and Ag A ha ep esen an au oca aly ic
senso y ansduc ion sys em. RNAIII encodes del a-hemolysin
(hld)37 and is a majo egula o o i ulence ac o s in S. au eus,
inducing he ansc ip ion o a ious ex acellula p o eases
and oxins38. Al hough he genes encoding he ag P2 ope on
SAO in A/J mice
500
400
300
200
100
0
500
400
300
200
100
0
a cA a cB a cD a cC a cR
a cA a cB a cD a cC a cR
TPM
TPM
500
400
300
200
100
0
TPM
500
400
300
200
100
0
TPM
600
800
1,000
*
*
400
200
0
TPM
SAO in C57BL/6 mice
SAO in A/J
20 65
594
SAO in C57BL/6
a
b
Figu e 3 | Gene exp ession analysis o S. au eus du ing in ec ion o A/J and C57BL/6 mice. (a) Venn diag am showing he numbe o unique and
common exp essed genes be ween S. au eus in ec ing A/J and C57BL/6 mice based on di e en ial gene exp ession analysis de e mined wi h NOISeq.
(b) Gene composi ion and o ganiza ion o he genes o he ADI ope on and hei le el o exp ession in S. au eus du ing in ec ion o A/J (blue ba s) o
C57BL/6 ( ed ba s) mice. Each ba ep esen s he mean o TPM±s.d. o iplica es.
NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268 ARTICLE
NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions 5

(ag BDCA) we e exp essed by S. au eus o a simila le el in bo h
mouse s ains, he exp ession le el o RNAIII/hld was g ea e
du ing in ec ion o C57BL/6 mice (Fig. 4c, Supplemen a y
Da a 4). The gene encoding he ansc ip ional egula o Sa R
was also up egula ed by S. au eus in ec ing C57BL/6 mice
(Fig. 4c, Supplemen a y Da a 4). This could explain he highe
le el o ansc ip s encoding p o eases and oxins de ec ed in
S. au eus du ing in ec ion o C57BL/6 mice, since bo h RNAIII
( e . 38) and Sa R39 ac i a e hei ansc ip ion.
An imic obial pep ides (AMPs) a e an impo an pa o he
hos inna e immune de ense agains S. au eus by di ec ly
impai ing he in eg i y o he bac e ial cell wall40. The bac e ial
gene encoding phospha idylglyce ol lysyl ans e ase (mp F),
which is pa o he cell wall s ess s imulon and media es
Table 2 | DEGs be ween S. au eus in ec ing A/J and C57BL/6 mice wi h g ea e ansc ip abundance du ing in ec ion o
C57BL/6 mice
Locus ag Gene symbol Desc ip ion
SAOUHSC_02260 hld Del a-hemolysin
SAOUHSC_00411.1 psma1 Alpha phenol soluble modulin
SAOUHSC_02566 sa R Hypo he ical
SAOUHSC_02971 au Zinc me allop o einase au eolysin
SAOUHSC_00435 gl B Glu ama e syn hase la ge subuni
SAOUHSC_01788 h S Th eonyl- RNA syn he ase
SAOUHSC_00987 sspB Cys eine p o ease
SAOUHSC_00248 ly M Pep idoglycan hyd olase
SAOUHSC_02571 ssaA Sec e o y an igen
SAOUHSC_00427 sle1 Au olysin
SAOUHSC_02941 n dG Hypo he ical
SAOUHSC_01001 qoxA Quinol oxidase subuni I
SAOUHSC_00964 Hypo he ical
SAOUHSC_00401 Hypo he ical
SAOUHSC_00717 saeP Hypo he ical
SAOUHSC_00741 n dI Ribonucleo ide educ ase s imula o y p o ein
SAOUHSC_01942 splA Se ine p o ease SplA
SAOUHSC_00083 sbnI Hypo he ical
SAOUHSC_00348 psF 30S ibosomal p o ein S6
SAOUHSC_00436 gl D Glu ama e syn hase subuni be a
SAOUHSC_00051 plc 1-phospha idylinosi ol phosphodies e ase
SAOUHSC_00411.2 psma2 Alpha phenol soluble modulin
SAOUHSC_01121 hla Alpha-hemolysin
SAOUHSC_00272 Hypo he ical
SAOUHSC_00801 secG P ep o ein anslocase subuni SecG
SAOUHSC_01935 splF Se ine p o ease SplF
SAOUHSC_02369 poE DNA-di ec ed RNA polyme ase subuni del a
SAOUHSC_00268 Hypo he ical
SAOUHSC_01110 e b Fib inogen-binding p o ein-like p o ein
SAOUHSC_01688 lepA GTP-binding p o ein LepA
SAOUHSC_02855 amiD2 LysM domain-con aining p o ein
SAOUHSC_02762 Hypo he ical
SAOUHSC_02114 dagK Pu a i e lipid kinase
SAOUHSC_02372 Hypo he ical
SAOUHSC_02430 h sA ABC anspo e pe iplasmic binding p o ein
SAOUHSC_01320 dhoM Homose ine dehyd ogenase
SAOUHSC_00986 sspC Cys eine p o ease
SAOUHSC_00411.3 psma3 Alpha phenol soluble modulin
SAOUHSC_02112 Hypo he ical
SAOUHSC_02972 isaB Immunodominan an igen B
SAOUHSC_02885 Hypo he ical
SAOUHSC_01326 lysP2 Hypo he ical
SAOUHSC_02127 sspB2 S aphopain hiol p o einase
SAOUHSC_01936 splE Se ine p o ease SplE
SAOUHSC_00728 l aS Hypo he ical
SAOUHSC_00625 mnhA Pu a i e mono alen ca ion/H þan ipo e subuni A
SAOUHSC_02763 opp-1F Pep ide ABC anspo e ATP-binding p o ein
SAOUHSC_00988 sspA Glu amyl endopep idase
SAOUHSC_00711 Hypo he ical
SAOUHSC_00561 aX Hypo he ical
SAOUHSC_02550 FdhD Fo ma e dehyd ogenase accesso y p o ein
SAOUHSC_00875 ndh2 Hypo he ical
SAOUHSC_01359 mp F Hypo he ical
SAOUHSC_01192 A Hypo he ical
SAOUHSC_02887 isaA Immunodominan an igen A
SAOUHSC_02254 g oEL chape onin G oEL
SAOUHSC_02485 poA DNA-di ec ed RNA polyme ase subuni alpha
SAOUHSC_01462 gpsB Hypo he ical
SAOUHSC_00367 cyP Hypo he ical
SAOUHSC_01062 Hypo he ical
SAOUHSC_00893 namA FMN oxido educ ase
SAOUHSC_00144 ausA Hypo he ical
SAOUHSC_00652 huA I on compound ABC anspo e ATP-binding p o ein
SAOUHSC_02883 ssaA LysM domain-con aining p o ein
SAOUHSC_01431 ms B Me hionine sul oxide educ ase B
DEG, di e en ially exp essed gene.
The comple e da a o he di e en ially exp essed genes wi h highe exp ession by S. au eus du ing in ec ion o he esis an C57BL/6 mice a e displayed in Supplemen a y Table 5.
ARTICLE NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268
6NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions
esis ance o ca ionic AMPs, by educing he nega i e cha ge o
he memb ane su ace41, was exp essed by S. au eus o a la ge
ex en du ing in ec ion o esis an C57BL/6 han du ing in ec ion
o A/J mice. Simila ly, o he genes o he cell wall s ess s imulon
including aX, au olysin encoding genes (ssaA, ly M, amiD2
and isaA), genes in ol ed in cell sepa a ion (gpsB and sle1),
g oEL encoding a chape onin, and he lipo eichoic acid syn hase
encoding gene l aS exhibi ed g ea e exp ession le els in S. au eus
du ing in ec ion o C57BL/6 mice han du ing in ec ion o A/J
mice. The highe induc ion o hese genes migh eflec an
adap i e esponse o S. au eus o keep cell wall in eg i y when
con on ed wi h high le els o cell wall damaging agen s in he
issue o C57BL/6 mice.
No ably, genes ela ed o cen al me abolism, i on acquisi ion,
gene al and oxida i e s ess esponses we e exp essed by S. au eus
o a simila ex en du ing in ec ion o A/J and C57BL/6 mice
(Supplemen a y Da a 4), indica ing ha hei exp ession was no
influenced by he le els o hos esis ance o in ec ion.
The RNA-seq esul s we e alida ed in a selec ed se o genes
om hos and pa hogen by quan i a i e e e se ansc ip ion–
PCR (RT–PCR; Supplemen a y Fig. 3) and a he p o ein le el by
ELISA (Supplemen a y Fig. 4).
E ec o dec eased hos esis ance on S. au eus ansc ip ion.
Nex , we de e mined i dep essing specific mechanisms o hos
esis ance in C57BL/6 mice a ec ed he ansc ip ional esponse
o S. au eus du ing in ec ion. Fi s , we hypo hesized ha apoli-
pop o ein B (ApoB), he majo s uc u al p o ein o e y low-
densi y (VLDL) and low-densi y lipop o eins (LDL),
con ibu es o he esis ance o C57BL/6 mice o S. au eus in ou
in ec ion model, because he gene encoding Apo B (Apob) was
exp essed o a g ea e ex en in he kidneys o C57BL/6 han in
he kidneys o A/J mice a bo h gene exp ession (Fig. 5a) and
p o ein le el (Fig. 5b), be o e and a e in ec ion (Fig. 5c).
Fu he mo e, ApoB has been shown o con ibu e o he hos
de ense agains S. au eus in expe imen al models o skin42 and
espi a o y43 in ec ion by an agonizing he ag quo um sensing
sys em o S. au eus. To alida e his hypo hesis, A/J and C57BL/6
mice we e ea ed wi h 4-aminopy azolopy imidine (4-APP), a
d ug ha impai s low-densi y lipop o ein sec e ion44, and
subsequen ly in ec ed in a enously wi h S. au eus. Whe eas
inhibi ion o ApoB ende ed C57BL/6 mice mo e suscep ible o S.
au eus, demons a ed by he significan ly highe bac e ial loads in
kidneys a 48 h in ec ion (P- alueo0.05, - es ), (Fig. 5d), i did
no a ec he le el o suscep ibili y o A/J mice (Fig. 5d). Nex , we
in es iga ed i he educed esis ance in C57BL/6 mice a e
a enua ion o ApoB sec e ion impac ed he ansc ip ional
esponse o S. au eus du ing in ec ion. Fo his pu pose, we
compa ed he exp ession o a se o i ulence- ela ed genes in
S. au eus in ec ing 4-APP- ea ed C57BL/6 mice wi h he
exp ession o he same se o genes in S. au eus in ec ing
C57BL/6 mice ea ed wi h ehicle alone. The esul s show ha
he le el o exp ession o all genes es ed hld/RNAIII, sa R,hla,
sspA,au , aX and gl B was dec eased by 4-APP- ea men ,
while he exp ession o he hypo he ical alanine pe mease (aapA)
was highe in S. au eus in ec ing 4-APP- ea ed han in ehicle-
ea ed C57BL/6 mice (Table 3). These genes we e also ound o
be di e en ially exp essed be ween S. au eus in ec ing C57BL/6
mice and S. au eus in ec ing C57BL/6 mice deficien in he
exp ession o MyD88, an adap o molecule ha is essen ial o he
signalling o IL-1R/TLR amily (Table 3). Since MyD88-deficien
mice a e mo e suscep ible o S. au eus han wild ype C57BL/6
mice45, hese obse a ions u he demons a ed he ema kable
influence o he le el o hos esis ance on he ansc ip ional
esponse o S. au eus du ing in ec ion.
Ta ge exp ession a ec s e ficacy o an i- i ulence app oaches.
A e ha ing demons a ed he influence o he le els o hos
esis ance on bo h he quali y and quan i y o S. au eus an-
sc ip ional esponse, we sough o de e mine he consequences o
his dependence on he e ec i eness o an i- i ulence s a egies. Fo
his pu pose, we assessed he e ec o neu alizing a i ulence ac o
ha di e ed in exp ession be ween S. au eus in ec ing A/J and
C57BL/6 mice on he bac e ia fi ness du ing in ec ion. We chose
au eolysin, which has been shown o be impo an o ull i ulence
o S. au eus in expe imen al in ec ion models46,47 and was
exp essed o a significan ly g ea e ex en by S. au eus du ing
in ec ion o C57BL/6 han du ing in ec ion o A/J mice in ou s udy
(FDRo0.05, NOISeq analysis). C57BL/6 and A/J mice we e
simul aneously challenged wi h wild ype and an au eolysin-
deficien s ain o S. au eus (wild ype, Dau ) and he amoun o
each bac e ial s ain was de e mined in he kidneys o in ec ed mice
a 48h o in ec ion. The o e all amoun o S. au eus bac e ia
coun ing bo h wild ype and Dau s ains was significan ly g ea e
(P¼0.0138, - es ) in he kidneys o A/J (1.3 108±4.3 107)
han in he kidneys o C57BL/6 mice (1.03 107±5.4 106).
Mo eo e , while a lowe amoun o Dau han wild ype S. au eus
was eco e ed om C57BL/6 mice, he amoun o Dau eco e ed
om A/J mice was compa able o ha o wild ype s ain (Fig. 6a).
Thus, he Dau had a compe i i e disad an age when co-
adminis e ed wi h wild ype S. au eus in C57BL/6 mice (mean
compe i i e index o Dau /wild ype S. au eus o 0.013), while
Dau and wild ype S. au eus we e equally compe i i e a e
co-adminis a ion in A/J mice (mean compe i i e index o
Dau /wild ype S. au eus o 1.595) (Fig. 6b). Taken oge he ,
hese esul s indica e ha he e ficacy o a ge ing a i ulence ac o
by an i- i ulence s a egies will s ongly depend on i s le el o
exp ession by he pa hogen du ing in ec ion, which in u n is
highly influenced by he in insic le els o hos esis ance o
in ec ion.
Discussion
An i- i ulence s a egies based on a enua ion o bac e ial
pa hogenesis by he specific inhibi ion o i ulence ac o s
essen ial o he pa hogen’s su i al du ing in ec ion48, ha e
ecei ed inc easing a en ion as no el ea men op ions o
in ec ions caused by an ibio ic- esis an pa hogens48. The concep
o an i- i ulence he apy is s ill e y much in i s in ancy and
he e o e mo e esea ch is needed o explo e i s p ac icabili y.
One impo an aspec ha should be conside ed ca e ully when
designing an i- i ulence s a egies is ha he exp ession
o i ulence ai s by he pa hogens is no cons i u i e bu
a he influenced by he specific en i onmen encoun e ed
du ing in ec ion. Consequen ly, absen exp ession o he
a ge ed i ulence ac o s could ende an i- i ulence s a egies
comple ely ine ec i e. The e o e, i is essen ial o unde s and he
impac o he wide- anging, in e -indi idual a ia ion o he hos
esponse on he pa hogen’s exp ession o i ulence de e minan s
du ing in ec ion.
Ou s udy suppo s he idea ha he hos gene ic backg ound
a ec s he ansc ip ional esponse o S. au eus du ing in ec ion.
The limi ed capabili y o he immune de ense mechanisms o
suscep ible A/J mice o con ol S. au eus g ow h led o he
de elopmen o an in ense inflamma o y esponse, appa en by
he disp opo iona e exp ession o inflamma o y cy okines and
damage-associa ed molecula pa e ns. T ansc ip ional ep o-
g amming o he euka yo ic cells, possibly esul ing om he
concomi an accumula ion o acidic p oduc s and he lowe ed
oxygen ension (hypoxia) in he in ec ed issue, in ol ed he
induc ion o Hi 1a ha encodes he cen al media o o
ansc ip ional esponses o hypoxia HIF-1a49,50. The e o e, he
NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268 ARTICLE
NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions 7
majo challenge aced by S. au eus in suscep ible A/J mice seems
o be he adap a ion o he ad e se condi ions imposed by he
hype inflamma o y esponse and hypoxic mic oen i onmen s.
To su i e in he sep ic A/J mice, S. au eus inc eased exp ession
o he ADI ope on (a cABDCR), which is gene ally induced unde
anae obic condi ions27 and is impo an o ene gy gene a ion,
bu also p o ec s S. au eus agains acidic s ess28.
The supe io esis ance mechanisms o C57BL/6 mice agains
S. au eus enabled a be e con ol o bac e ial mul iplica ion.
The e o e, S. au eus aced he main challenge o coun e ac ing he
powe ul hos de ense mechanisms o he esis an C57BL/6 mice.
The ansc ip ion da a indica ed ha S. au eus esponded
o he ad e se en i onmen encoun e ed wi hin C57BL/6 mice
by inc easing he exp ession o cy o oxins and ex acellula
p o eases. Cy o oxins such as alpha-hemolysin (hla) and PSMs
(psma1-3 and hld) help S. au eus o a oid phagocy ic killing by
inducing po es in he memb ane o hos cells, leading o cell
dea h51 and can p omo e bac e ial sp eading by dis up ing he
2,000
20,000
10,000
8,000
6,000
4,000
2,000
SAO in A/J mice
SAO in C57BL/6 mice
0
40,000
1,000
3,000
Sa R
–+
+
Sa R
*
2,500
2,000
1,500
1,000
500
0
1,000
2,000
3,000
4,000
5,000
6,000
0
800
700
600
*
*
*
*
*
*
*
**
*
*
TPM
TPM
TPM
TPM
TPM
TPM
500
400
300
200
100
0
sspB2
sspB
sspA
sspC
AIP
Ag B
Ag D
Ag A
Ag C
P
P
P3
P2
+
RNAIII
RNAII
ag A
ag A
ag C
au
600
0
25,000
50,000
75,000
100,000
125,000
150,000
175,000
500
400
300
200
*
*
100
0au
ag C
ag B
ag B
ag D
ag D
hld hld
hld
AIP
O
SM
I
F
D
CT
S
Y
O
SM
I
F
D
CT
S
Y
spIA
spIE
spIF
psma1
psma2
psma3
hla
ab
c
Figu e 4 | Exp ession o selec ed genes by S. au eus du ing in ec ion o C57BL/6 o A/J mice. (a) Exp ession le els o genes encoding p o eases. (b)
Exp ession le els o genes encoding oxins. (c) Schema ic ep esen a ion and le el o exp ession o genes encoding he global egula o Ag and Sa R. Red
ba s show exp ession alues o he genes exp essed by S. au eus in C57BL/6 mice and blue ba s show exp ession alues o he genes exp essed by S.
au eus in A/J mice. Each ba ep esen s he mean TPM±s.d. o iplica es.
ARTICLE NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268
8NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions
epi helial ba ie 52. The s ong induc ion o genes encoding key
exop o eases, including he me allop o einase au eolysin (au ),
se ine p o eases (splA,sspA,splE and splF), s aphos a in B (sspC)
and cys eine p o ease (sspB), u he accen ua es he impo ance
o immune e asion o S. au eus su i al in C57BL/6 mice. These
p o eases can clea e and deg ade componen s o he complemen
sys em53 and can inhibi neu ophil chemo axis54. The exp ession
o hese i ulence de e minan s is o ches a ed h ough ans-
c ip ional and pos - ansc ip ional egula ion by egula o y
sys ems. The exp ession o RNAIII, a majo egula o o hese
ac o s38, was highe exp essed by S. au eus du ing in ec ion o
C57BL/6 mice han in A/J mice, while he exp ession o he
au oca aly ic senso y ansduc ion sys em did no di e be ween
bo h mouse s ains. This appa en disc epancy could, howe e , be
explained by g ea e ansc ip abundance o Sa R in S. au eus
in ec ing C57BL/6 mice, which mi iga es he exp ession o he ag
P2 ope on, while ha ing no appa en e ec on he exp ession o
RNAIII ( e . 55). Mo eo e , Sa R enhances he exp ession o
genes encoding se e al ex acellula p o eases egula ed by
RNAIII ( e . 39) and, he e o e, may ac in syne gy wi h
RNAIII o boos he exp ession o i ulence ac o s, equi ed
o su i al unde he s ong immune p essu e in C57BL/6 mice.
The s ong immune p essu e in he esis an mice could also
explain he g ea e exp ession o se e al genes o he cell wall
s ess s imulon by S. au eus in ec ing C57BL/6 mice. I has been
shown ha he magni ude o cell wall s imulon induc ion s ongly
600
Unin ec ed A/J C57BL/6
A/J C57BL/6
***
10
8
6
4
2
Vehicle Vehicle
4-APP 4-APP
***
**
Fold change
in Apob exp ession
(C57BL/6 ela i e o A/J)
Fold change
in Apob exp ession
(C57BL/6 ela i e o A/J)
CFU S.au eus in kidneys
(Log10)
400
200
0
RNA-Seq
RNA-Seq
25
20
15
10
5
0
S. au eus
RT-PCR
RT-PCR
ab
cd
Figu e 5 | Apolipop o ein B (ApoB) con ibu es o esis ance agains S. au eus bloods eam in ec ion in C57BL/6 mice. (a) Rela i e old change o Apob
exp ession alues in he kidneys o unin ec ed C57BL/6 espec o hose in he kidneys o unin ec ed A/J mice de e mined by ei he RNA-Seq (whi e ba s)
o qRT–PCR (black ba s). Each ba ep esen s he mean ela i e old change±s.d. o iplica es. (b) Exp ession o ApoB in kidneys o A/J (le ) and C57BL/
6 ( igh ) mice de e mined by immunos aining o kidney issue using specific an ibodies agains ApoB. Magnifica ion X40. (c) Rela i e old change o Apob
exp ession alues in he kidneys o S. au eus-in ec ed C57BL/6 in compa ison o hose in he kidneys o S. au eus-in ec ed A/J mice a 48 h o in ec ion
de e mined by ei he RNA-Seq (whi e ba s) o qRT-PCR (black ba s). Each ba ep esen s he mean ela i e old change±s.d. o iplica es. (d) Bac e ial
loads in he kidneys o A/J (blue symbols) and C57BL/6 ( ed symbols) mice ea ed wi h 4-Aminopy azolo[3,4-d]py imidine (4-APP) (open symbols) o
wi h ehicle alone (solid symbols) a 48 a e in a enous inocula ion wi h 2 107CFU o S. au eus s ain SH1000. Each symbol ep esen s he bac e ial
coun s de e mined in an indi idual mouse and he ho izon al lines ep esen he a e age±s.d. o each mouse s ain (n¼6, - es , **Po0.01, ***Po0.001).
Table 3 | S. au eus gene exp ession du ing in ec ion o 4-APP- ea ed and MyD88-deficien C57BL/6 mice.
Locus ag Gene
symbol
Desc ip ion Rela i e old change in 4-APP- ea ed
o ehicle- ea ed C57BL/6 mice
(mean (s.e.))
Rela i e old change in MyD88-
deficien o wild ype C57BL/6 mice
(mean (s.e.))
SAOUHSC_02265 ag A Accesso y gene egula o p o ein A 1.60 (0.22) 1.62 (0.5)
SAOUHSC_02566 sa R Accesso y egula o R 1.83 (0.22) 1.23 (0.09)
SAOUHSC_01121 hla Alpha-hemolysin 3.32 (1.56) 18.06 (0.16)
SAOUHSC_02971 au Zinc me allop o einase au eolysin 2.31 (0.96) 2.59 (0.75)
SAOUHSC_00988 sspA Glu amyl endopep idase 2.19 (0.01) 2.32 (0.46)
SAOUHSC_00561 aX P o ein V aX 3.91 (2.76) 1.11 (0.04)
SAOUHSC_00436 gl D Glu ama e syn hase subuni be a 2.41 (1.11) 6.03 (1.66)
SAOUHSC_01803 aapA D-se ine/D-alanine/glycine anspo e 1.21 (2.32) 1.69 (0.29)
RNAIII Regula o y RNA 1.80 (0.53) 2.52 (0.08)
Le el o exp ession o a subse o genes by S. au eus du ing in ec ion o 4-APP- ea ed compa ed wi h ehicle- ea ed C57BL/6, espec i ely MyD88-deficien compa ed wi h wild- ype C57BL/6 mice
de e mined by quan i a i e e e se ansc ip ion–PCR (qRT–PCR).
NATURE COMMUNICATIONS | DOI: 10.1038/ncomms14268 ARTICLE
NATURE COMMUNICATIONS | 8:14268 | DOI: 10.1038/ncomms14268 | www.na u e.com/na u ecommunica ions 9