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Afadin downregulation by helicobacter pylori Induces epithelial to mesenchymal transition in gastric cells

Abstract

This article is a result of the project NORTE-01-0145-FEDER-000029, supported by Norte Portugal Regional Programme (NORTE 2020), under the PORTUGAL 2020 Partnership Agreement, through the European Regional Development Fund (ERDF). i3S was financed by ERDF funds through the COMPETE 2020 and Portugal 2020, and by Portuguese funds through FCT – Fundação para a Ciência e a Tecnologia/Ministério da Ciência, Tecnologia e Inovação (POCI-01-0145-FEDER-007274). MM, JM, and ML have fellowships from FCT (SFRH/BD/95631/2013, SFRH/BD/116965/2016, and SFRH/BPD/110065/2015).

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Afadin downregulation by helicobacter pylori Induces epithelial to mesenchymal transition in gastric cells

Author: Marques, MS,Melo, J,Cavadas, B,Mendes, N,Pereira, L,Carneiro, F,Figueiredo, C,Leite, M
Publisher: Frontiers Media
Year: 2018
DOI: 10.3389/fmicb.2018.02712
Source: https://repositorio-aberto.up.pt/bitstream/10216/126507/1/10.3389-fmicb.2018.02712.pdf
micb-09-02712 No embe 7, 2018 Time: 21:31 # 1
ORIGINAL RESEARCH
published: 09 No embe 2018
doi: 10.3389/ micb.2018.02712
Edi ed by:
Alain Pie e Gobe ,
Vande bil Uni e si y Medical Cen e ,
Uni ed S a es
Re iewed by:
Lydia E. W oblewski,
Vande bil Uni e si y Medical Cen e ,
Uni ed S a es
Yoshimi Takai,
Kobe Uni e si y G adua e School
o Medicine, Japan
*Co espondence:
Ceu Figuei edo
[email p o ec ed]
†These au ho s ha e sha ed
co-au ho ship
Special y sec ion:
This a icle was submi ed o
In ec ious Diseases,
a sec ion o he jou nal
F on ie s in Mic obiology
Recei ed: 04 Augus 2018
Accep ed: 23 Oc obe 2018
Published: 09 No embe 2018
Ci a ion:
Ma ques MS, Melo J, Ca adas B,
Mendes N, Pe ei a L, Ca nei o F,
Figuei edo C and Lei e M (2018)
A adin Down egula ion by
Helicobac e pylo i Induces Epi helial
o Mesenchymal T ansi ion in Gas ic
Cells. F on . Mic obiol. 9:2712.
doi: 10.3389/ micb.2018.02712
A adin Down egula ion by
Helicobac e pylo i Induces Epi helial
o Mesenchymal T ansi ion in Gas ic
Cells
Miguel Sa dinha Ma ques1,2,3, Joana Melo1,2,4, B uno Ca adas1,2,4, Nuno Mendes1,2,
Luísa Pe ei a1,2,3, Fá ima Ca nei o1,2,3,5, Ceu Figuei edo1,2,3*†and Ma ina Lei e1,2,3†
1i3S – Ins i u o de In es igação e Ino ação em Saúde, Uni e sidade do Po o, Po o, Po ugal, 2Ipa imup – Ins i u e
o Molecula Pa hology and Immunology, Uni e si y o Po o, Po o, Po ugal, 3Depa men o Pa hology, Facul y
o Medicine, Uni e si y o Po o, Po o, Po ugal, 4Ins i u o de Ciências Biomédicas Abel Salaza , Uni e si y o Po o, Po o,
Po ugal, 5Depa men o Pa hology, Cen o Hospi ala São João, Po o, Po ugal
A adin is a cy oplasmic p o ein o he adhe ens junc ions, which egula es he o ma ion
and s abiliza ion o bo h he adhe ens and he igh junc ions. Abe an exp ession o
A adin has been shown in cance and i s loss has been associa ed wi h epi helial- o-
mesenchymal ansi ion (EMT). EMT is cha ac e ized by he change om an epi helial o
a mesenchymal pheno ype, wi h modi ica ions on he exp ession o adhesion molecules
and acquisi ion o a mig a o y and in asi e cell beha io . While i is known ha
Helicobac e pylo i dis up s he igh and he adhe ens junc ions and induces EMT, he
e ec o he bac e ia on A adin is s ill unknown. The aim o his s udy was o disclose
he e ec o H. pylo i on A adin and i s impac in he induc ion o an EMT pheno ype
in gas ic cells. Using wo di e en cell lines, we obse ed ha H. pylo i in ec ion
dec eased A adin p o ein le els, independen ly o CagA, T4SS, and VacA i ulence
ac o s. H. pylo i in ec ion o cell lines ecapi ula ed se e al EMT ea u es, displacing and
down egula ing mul iple p o eins om cell–cell junc ions, and inc easing he exp ession
o ZEB1, Vimen in, Slug, N-cadhe in, and Snail. Silencing o A adin by RNAi p omo ed
delocaliza ion o junc ional p o eins om he cell–cell con ac s, inc eased pa acellula
pe meabili y, and dec eased ansepi helial elec ical esis ance, all compa ible wi h
impai ed junc ional in eg i y. A adin silencing also led o inc eased exp ession o he
EMT ma ke Snail, and o he o ma ion o ac in s ess ibe s, oge he wi h inc eased
cell mo ili y and in asion. Finally, and in line wi h ou in i o da a, he gas ic mucosa o
indi iduals in ec ed wi h H. pylo i showed dec ease/loss o A adin memb ane s aining a
cell–cell con ac s signi ican ly mo e equen ly han unin ec ed indi iduals. In conclusion,
A adin is down egula ed by H. pylo i in ec ion in i o and in i o, and i s down egula ion
leads o he eme gence o EMT and o he acquisi ion o an agg essi e pheno ype in
gas ic cells, which can con ibu e o gas ic ca cinogenesis.
Keywo ds: Helicobac e pylo i, A adin, epi helial o mesenchymal ansi ion, cell–cell junc ion dis up ion, gas ic
cance
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Ma ques e al. H. pylo i, A adin and EMT
INTRODUCTION
Helicobac e pylo i is he mos p e alen ch onic in ec ion
wo ldwide, wi h almos hal o he human popula ion being
in ec ed by his bac e ium (Zamani e al., 2018). All indi iduals
in ec ed wi h H. pylo i de elop ch onic in lamma ion o he
gas ic mucosa, which in some cases may p og ess h ough a
cascade o al e a ions ha culmina e in gas ic cance (Polk and
Peek, 2010). In ac , H. pylo i is ega ded as he majo isk ac o
o gas ic cance de elopmen , and has been conside ed as a class
I ca cinogen by he Wo ld Heal h O ganiza ion (IARC, 1994,
2011).
Gas ic mucosal in lamma ion and he de elopmen o mo e
se e e clinical ou comes o H. pylo i in ec ion ha e been
a ibu ed o a ia ion o i ulence ac o s be ween di e en
s ains. Among hem, he ype 4 sec e ion sys em (T4SS)-
ansloca ed CagA oncop o ein and he VacA cy o oxin a e he
bes ecognized, and in ec ion wi h s ains ha bo ing he mos
pa hogenic a ian s o hese ac o s a e associa ed wi h g ea e
in ensi ies o gas ic in lamma ion, and wi h inc eased isk
o de eloping gas ic p emalignan lesions, and gas ic cance
(A he on e al., 1995;Figuei edo e al., 2002;Gonzalez e al.,
2011).
In he s omach, H. pylo i can be ound in he mucus and
in close con ac wi h he epi helium, wi h a opism o cell–
cell junc ions (Tan e al., 2009;Bugay so a e al., 2017). This
p oximi y o H. pylo i o in e cellula con ac s, leads o dis up ion
o he epi helial apical junc ional complex (AJC), which includes
he igh junc ions (TJs) and he adhe ens junc ions (AJs)
(Amie a e al., 2003;W oblewski e al., 2009, 2015;Hoy e al.,
2010).
The TJs con ibu e o he egula ion o epi helial pa acellula
pe meabili y and o main enance o cell pola i y, and a e
cons i u ed by ansmemb ane p o eins, such as occludin,
claudins, and junc ional adhesion molecules (JAMs), and by
cy oplasmic-associa ed p o eins, like zonula occludens 1 (ZO-
1) (Zihni e al., 2016). The AJs a e loca ed below he TJs,
unc ion mainly in cell–cell adhesion, and a e composed by he
E-cadhe in-ca enins and by he nec in-A adin complexes (Takai
e al., 2008a;Zihni e al., 2016).
A adin (AFDN, AF6 o MLLT4) is an ac in-binding p o ein
ha associa es wi h nec ins a AJs, and ansien ly wi h ZO-1,
and ha egula e he o ma ion and s abiliza ion o he junc ional
complexes (Ikeda e al., 1999;Zhadano e al., 1999;Yokoyama
e al., 2001;Fukuha a e al., 2002;Lo ge and Moelling, 2006;
Takai e al., 2008b). A g owing body o e idence sugges s ha
A adin is in ol ed in ca cinogenesis. In addi ion o epo s o
loss o A adin exp ession in epi helial-de i ed b eas , colon, and
panc eas umo s (Le essie e al., 2007;Sun e al., 2014;Xu e al.,
2015), i s down egula ion led o inc eased cell in asion in i o
and o accele a ed umo g ow h in mice (Fou nie e al., 2011).
Fu he mo e, A adin was shown o be a nega i e egula o o
he epi helial- o-mesenchymal ansi ion (EMT) ma ke Snail in
panc ea ic cance (Xu e al., 2015).
Epi helial- o-mesenchymal ansi ion desc ibes he
di e en ia ion o epi helial cells in o mesenchymal cells,
and is an impo an p ocess du ing emb yogenesis, o gan
de elopmen , issue egene a ion, and cance p og ession
(Kallu i and Weinbe g, 2009). EMT is cha ac e ized by loss o he
AJC, whe e junc ional p o eins a e deg aded o delocalized, he
co ical ac in cy oskele on is eo ganized wi h he o ma ion o
lamellipodia and ilopodia, and he e is ep ession o cy oke a in
in e media e ilamen s and exp ession o imen in ilamen s
(Lamouille e al., 2014). Accompanying hese mo phological
changes, he e is ep og amming o gene exp ession h ough
ac i a ion o he mesenchymal pheno ype egula o s, such as
Snail, Slug, and zinc- inge E-box-binding homeobox 1 (ZEB1)
ansc ip ion ac o s, concomi an ly wi h down egula ion o
epi helial ma ke s (Lamouille e al., 2014).
Along wi h he changes in exp ession and localiza ion o
p o eins o he AJC, H. pylo i in ec ion is able o inc ease cell
in asi e p ope ies (Oli ei a e al., 2006;Cos a e al., 2016),
and o ac i a e se e al signaling pa hways ha induce an EMT
pheno ype in he in ec ed cells (Sai o e al., 2010;Yin e al., 2010;
Baud e al., 2013;Bessede e al., 2014;Lee e al., 2014;Yu e al.,
2014;W oblewski e al., 2015). The e o e, we aimed o de e mine
he e ec o H. pylo i in ec ion on A adin and i s impac in he
induc ion o an EMT pheno ype in gas ic cells.
MATERIALS AND METHODS
Cell Cul u e and T ans ec ions
The human gas ic cance cell lines MKN74 (a kind gi om
Ca la Oli ei a, Uni e si y o Po o) and NCI-N87 (ATCCR
CRL-
5822TM), we e cul u ed in RPMI 1640 (Biowes ), supplemen ed
wi h 10% e al bo ine se um (HyCloneTM, GE Heal hca e Li e
Sciences) and wi h 100 U-100 µg/mL penicillin-s ep omycin
sul a e (GibcoR
), a 37◦C, unde a 5% CO2humidi ied
a mosphe e.
Cell ans ec ions we e pe o med using he Lipo ec amineR

2000 ans ec ion eagen (In i ogenTM Li e Technologies),
acco ding o he manu ac u e ’s p o ocol. An siRNA silencing
A adin exp ession (sc-43007, San a C uz) and a nega i e con ol
siRNA (All S a s Nega i e Con ol siRNA; QIAGEN, Ge many),
we e used a a inal concen a ion o 75 nM in se um- and
an ibio ic- ee Op i-MEM medium (In i ogen). The e iciency
o ans ec ion was e alua ed by Wes e n blo .
Bac e ial S ains and G ow h Condi ions
H. pylo i s ain 26695 (ATCC 700392, cagPAI+, acA s1/m1)
was ob ained om ATCC (LGC S anda ds, Uni ed Kingdom),
and H. pylo i s ain 60190 (ATCC 49503 cagPAI+, acA
s1/m1) and i s espec i e 60190CagA−, 60190CagE−, and
60190VacA−mu an s we e a kind gi om P o esso John
A he on (Uni e si y o No ingham). S ains we e cul u ed
in T yp icaseTM Soy Aga wi h 5% Sheep Blood (TSAII;
Bec on, Dickinson and Company) a 37◦C unde mic oae ophilic
a mosphe e (GENbox mic oae ; bioMé ieux S.A.) o 48 h, as
p e iously desc ibed (Cos a e al., 2016). Fo he p oduc ion o
condi ioned media, bac e ia we e g own in F12 medium (Gibco)
supplemen ed wi h 1x choles e ol (Gibco) unde mic oae ophilic
condi ions a 37◦C wi h cons an o a ion (150 pm) o e
24 h. Subsequen ly, bac e ial suspensions we e cen i uged a
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Ma ques e al. H. pylo i, A adin and EMT
15,000 ×g, o 15 min, and he supe na an s we e il e ed h ough
a 0.2-µm s e ile il e , and concen a ed by ul a il a ion using
a 10 kDa po e size Amicon (EMD Millipo e). The esul ing
concen a ed bac e ial condi ioned media was used as media o
gas ic cell cul u es in compa ison wi h F12 medium plus 1x
choles e ol alone wi hou bac e ia, as con ol.
In ec ion o Gas ic Cells
Gas ic cell lines we e g own in an ibio ic- ee medium a 100%
con luence o 5 days in 6-well pla es (TPPR
Plas ic P oduc s
AG). Medium changes we e ca ied ou e e y day. Fo in ec ion
expe imen s, bac e ia g own o 48 h we e collec ed in phospha e
bu e saline (PBS, pH 7.4) and added o gas ic cell monolaye s,
a a mul iplici y o in ec ion (MOI) o 100 bac e ia pe cell. Co-
cul u es we e main ained o 16 h a 37◦C, unde a 5% CO2
humidi ied a mosphe e. Unin ec ed con ol cell cul u es we e
p ocessed simila ly, wi h he addi ion o PBS ins ead o bac e ia.
Fo s udies wi h bac e ial condi ioned media, F12 medium
supplemen ed wi h 1x choles e ol (Gibco) alone o a e 24 h o
bac e ial g ow h was used as cul u e medium.
Wes e n Blo and An ibodies
Cells we e collec ed and lysed in 1% T i on X-100, 1% NP-
40 in PBS, pH 7.4, con aining a cock ail o inhibi o s o
p o eases (Roche Applied Science, Mannheim, Ge many) and o
phospha ases (Sigma-Ald ich). A e supe na an eco e y, he
p o ein concen a ion was assessed using he Bio-Rad p o ein
assay ki (Bio-Rad), acco ding o he manu ac u e ’s p o ocol.
Iden ical amoun s o p o ein we e subjec ed o SDS-PAGE
and ans e ed on o ni ocellulose memb anes (Ame sham).
Memb anes we e blocked wi h 5% a - ee milk o 1 h, a oom
empe a u e, incuba ed o e nigh wi h p ima y an ibodies a
4◦C, and incuba ed wi h seconda y an ibodies o 1 h, a oom
empe a u e. An ibodies we e as ollows: an i-AF6 (610732)
and an i-β-Ca enin (610153) we e om BD T ansduc ion
Labo a o iesTM; an i-Vimen in (5741), an i-N-Cadhe in (13116),
an i-Snail (3879), an i-Slug (9585), an i-TCF8/ZEB1 (3396), and
an i-E-Cadhe in (3195) we e om Cell Signaling Technology;
an i-GAPDH (sc-47724) was om San a C uz Bio echnology;
an i-E-cad HECD1 (13-1700), an i-ZO-1 (61-7300), and an i-
Occludin (71-1500) we e om The mo Fishe Scien i ic; an i-
αTubulin (T9026) was om Sigma-Ald ich; and ho se adish
pe oxidase-conjuga ed seconda y an i- abbi (NA934) and an i-
mouse (NA931) we e om GE Heal hca e Li e Sciences.
T answell Ma igel In asion Assay
Ma igel-coa ed 24-well in asion inse s wi h 8 µm po es
(Co ningTM, BD Biosciences) we e used o he in i o in asion
assay. Upon hyd a ion wi h RPMI medium, cells we e seeded a
a densi y o 5 ×104cells in RPMI wi h 10% FBS, on op o he
Ma igel in he uppe side o he inse ; he bo om side was illed
wi h cul u e medium. Fo in ec ion expe imen s, H. pylo i was
added a a MOI o 100. A e 24 h incuba ion, non-in ading cells
we e emo ed wi h a co on swab, he emaining cells we e ixed
in me hanol o 10 min on ice, and he il e was moun ed wi h
Vec ashieldR
wi h DAPI (Vec o Labo a o ies). The whole il e
was coun ed, using a 20×magni ica ion.
Immuno luo escence
Cells we e g own on glass co e slips (Ma ien eld, Ge many),
ixed wi h 4% pa a o maldehyde o ice-cold me hanol. Upon
pe meabiliza ion and blocking wi h 5% goa se um, 0.3% T i on
X-100 in PBS, o 1 h, a oom empe a u e, p ima y an ibody
was added o 2 h a oom empe a u e. Co e slips we e
hen washed se e al imes wi h PBS pH 7.4, be o e incuba ion
wi h he espec i e Alexa Fluo -conjuga ed seconda y an ibodies
(In i ogen). Co e slips we e moun ed wi h Vec ashieldR
wi h
DAPI, and luo escence was moni o ed in a Zeiss Axio Image
Z1 Apo ome mic oscope.
T ansepi helial Elec ical Resis ance
(TER) and Fluo escein Iso hiocyana e
(FITC)-Dex an Pe meabili y Assay
Cells we e seeded a 100% con luence in 6.5 mm T answellR

wi h 3.0 µm Po e Polyes e Memb ane Inse (Co ning).
In eg i y o he epi helial monolaye was de e mined using a
Millicell ERS Vol ohmme e (Millipo e). P ocedu es o elec ode
equilib a ion and decon amina ion we e pe o med acco ding o
he manu ac u e ’s ins uc ions.
T ansepi helial elec ical esis ance (TER) was measu ed e e y
24 h, o six consecu i e days. Fo in ec ion expe imen s, H. pylo i
was added a MOI o 100, and TER was measu ed e e y 24 h,
o wo consecu i e days. To a oid empe a u e in luence, pla es
we e allowed o each oom empe a u e o 15 min, and medium
was changed a e each measu emen . TER alues we e calcula ed
as ohms/cm2. On he six h day pos A adin silencing, and he
second day pos in ec ion pa acellula pe meabili y was assessed
by measu ing he pe meabili y o he cell monolaye o FITC-
dex an (FD4, Sigma). A e measu ing he TER, he medium
was changed in he inne and bo om chambe , and allowed o
equilib a e o a leas 1 h. One mg/mL o FITC-dex an was
added o he inne chambe and incuba ed a 37◦C o 1 h.
A e incuba ion, luo escence was measu ed a an exci a ion o
485 nm and emission o 544 nm, on a Syne gy Mx mic opla e
eade . The amoun o di used dex an was de e mined using
calib a ion cu es es ablished wi h he s ock solu ion. Medium
wi hou FITC-dex an was used as blank.
Single Cell Mo ili y
Fo e alua ion o single cell mo ili y, 12-well pla es (TPPR

Plas ic P oduc s AG) we e coa ed wi h 5 µg/mL o Fib onec in
(Bioch om), o e nigh a 4◦C. Pla es we e washed wi h s e ile
PBS pH 7.4, and 1.5 ×103cells we e added o each well,
allowing hem o adhe e o 16 h. Adhe en cells we e labeled wi h
5µg/mL o Vyb an R
CM-Dil Cell-Labeling Solu ion (The mo
Fishe Scien i ic) o e 20 min, ollowed by h ee washes wi h
wa med RPMI wi hou phenol ed media. Ten di e en a eas
we e selec ed pe well, and li e images we e cap u ed e e y
15 min on a Leica DMI 6000 ime-lapse mic oscope (Leica
Mic osys ems, We zla , Ge many). The mig a o y pa hs and
eloci y o each cell we e analyzed wi h he Manual T acking
plugin unc ion a ailable a he Fiji so wa e package1.
1h p://imagej.ne /
F on ie s in Mic obiology | www. on ie sin.o g 3No embe 2018 | Volume 9 | A icle 2712
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Ma ques e al. H. pylo i, A adin and EMT
AFDN Gene Exp ession in No mal
H. pylo i-In ec ed and Non-in ec ed
S omachs
RNA-seq eads sequenced in s omach samples om 181
indi iduals wi hou disease we e ob ained om he Geno ype-
Tissue Exp ession (GTEx) da abase (Conso ium, 2015). Non-
human unmapped eads we e aligned agains a da ase o
197 bac e ial whole genomes collec ed om NCBI, comp ising
species iden i ied in he gas oin es inal ac by he Human
Mic obiome P ojec and addi ional species appea ing in disease
condi ions (Tu nbaugh e al., 2007). Bac e ial quan i ica ion
and no maliza ion we e es ima ed using he QmihR pipeline
(Ca adas e al., 2017). A sample was conside ed as in ec ed
by H. pylo i when coun s o his species eached a log2cu o
alue o 5. mRNA exp ession da a o he AFDN gene, in eads
pe kilobase pe million (RPKM), was ex ac ed om GTEx
elease 6.
Pa ien Ma e ials and His opa hology
Fo y- wo o malin- ixed and pa a in-embedded gas ic issue
specimens we e e ospec i ely e ie ed om he Depa men o
Pa hology o Cen o Hospi ala S. João (CHSJ; Supplemen a y
Table 1), om pa ien s unde going ba ia ic su ge y ha had
specimens ob ained o his opa hologic examina ion (mean age
[±SD], 40.4 ±12.6 yea s; emale o male a io, 6:1). Samples
ha e been used e ospec i ely, and ha e been delinked and
uniden i ied om hei dono s. The s udy was app o ed by he
e hics commi ee o CHSJ.
Specimens we e s ained wi h hema oxylin/eosin and modi ied
Giemsa, he la e o H. pylo i de ec ion. His ological assessmen
e alua ed he ollowing pa ame e s: H. pylo i in ec ion, ch onic
in lamma ion, polymo phonuclea ac i i y, glandula a ophy,
and in es inal me aplasia. His ological slides we e examined by
an expe ienced pa hologis , blinded o he clinical in o ma ion
o he pa ien s.
Immunohis ochemis y
Immunohis ochemis y was pe o med in a LabVision
Au os aine 480S (The mo Scien i ic). B ie ly, slides we e
depa a inized in xylene and hyd a ed h ough passages
in 100%, 95%, 70% e hanol, and insed in wa e . An igen
unmasking was pe o med o 35 min using 1x an igen
e ie al solu ion om he Enzo Poly iewR
Plus HRP-DAB
(an i-Rabbi ) ki . Slides we e cooled o 20 min and washed
wi h TBS-Tween-20, 0.01%. Endogenous pe oxidase ac i i y
was blocked o 10 min, and slides we e washed and placed
in he Au os aine . A e blocking o endogenous pe oxidase
ac i i y, slides we e incuba ed wi h An ibody blocke /diluen
(p o ided in he ki ) o 10 min o p e en unspeci ic binding,
ollowed by 1 h incuba ion wi h p ima y polyclonal an ibody
An i-AFDN (HPA030213, Sigma), 1:1250 dilu ed in an ibody
diluen (The mo Scien i ic, Lab ision). To p e en non-
speci ic binding, slides we e again incuba ed wi h an ibody
blocke /diluen o 5 min. A e wash, he Poly iew Plus
HRP (an i-Rabbi ) was added and incuba ed o 1 h. The
eac ion was e ealed wi h 3,30-diaminobenzidine (DAB) 5 min.
Coun e s ain was pe o med wi h HIGHDEFR
hema oxylin
(ENZO).
RNA Ex ac ion and Quan i ica ion o
A adin Exp ession by Quan i a i e
Real-Time PCR
To al RNA was ex ac ed using mi VanaTM miRNA Isola ion Ki
(The mo Fishe Scien i ic) ollowing manu ac u e ’s ins uc ions
om unin ec ed and 24 h-in ec ed MKN74 cells. RNA was
e e sed- ansc ibed using M-MuLV Re e se T ansc ip ase
and andom-hexame s (NZYTech). Quan i ica ion o A adin
exp ession was pe o med by quan i a i e eal- ime PCR (RT-
qPCR) using he TaqMan Gene Exp ession Assays (Applied
Biosys ems), Hs00984486_m1 o A adin and Hs99999905_m1
o GAPDH, as endogenous con ol gene, on an ABI P ism
7000 Sequence De ec ion Sys em (Applied Biosys ems), in
ou independen expe imen s. Da a we e analyzed by he
compa a i e 2(−11CT)me hod (Li ak and Schmi gen, 2001)
and Wilcoxon signed- ank es applied.
S a is ical Analysis
The unpai ed S uden ’s - es was used o compa isons be ween
wo independen g oups, and he one-way ANOVA wi h pos hoc
Tukey’s es was used o compa isons be ween h ee independen
g oups. K uskal–Wallis es was applied o GTEx da a ha
compa ed AFDN mRNA exp ession be ween in ec ed and non-
in ec ed samples. Wilcoxon signed- ank es was applied o
quan i a i e eal- ime PCR analysis. The ela ionship be ween he
p esence o H. pylo i and al e a ions o he immunohis ochemical
pa e n o A adin was assessed using he Fishe ’s exac es .
Da a analysis was pe o med using G aphPad P ism Ve sion
6.0. S a is ically signi icance was se a P≤0.05 (∗∗∗∗p≤0.0001,
∗∗∗p≤0.001, ∗∗p≤0.01, ∗p≤0.05). Da a in g aphs ep esen
mean ±s anda d e o o he mean (SEM) o a leas h ee
expe imen s.
RESULTS
H. pylo i In ec ion Dec eases A adin
Exp ession
Al e a ions o se e al TJ and AJ p o eins induced by H. pylo i
in ec ion ha e been epo ed (Amie a e al., 2003;Hoy e al.,
2010), bu he in luence o H. pylo i on A adin is so a unknown.
To in es iga e he e ec o H. pylo i on A adin, MKN74
and NCI-N87 cell lines ha es ablish compe en junc ional
complexes, we e in ec ed wi h s ain 26695 o 24 h.
Immuno luo escence analysis showed A adin p esen bo h
a he memb ane and in he nucleus in unin ec ed condi ions.
Upon in ec ion wi h H. pylo i he e was a signi ican dec ease
in A adin s aining in bo h cell lines, and a bo h memb ane
and nucleus subcellula localiza ions, as de e mined by imaging
quan i ica ion (Figu e 1A). Wi hin he nucleus, a signi ican
dec ease in he numbe o A adin nuclea do s was also
obse ed in in ec ed cells compa ed o unin ec ed gas ic cells
(Supplemen a y Figu e 1A).
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Ma ques e al. H. pylo i, A adin and EMT
FIGURE 1 | Impac o H. pylo i in ec ion on A adin exp ession. MKN74 and NCI-N87 gas ic cell lines we e le un ea ed o in ec ed wi h H. pylo i 26695 (A,B) o
in ec ed wi h H. pylo i 60190, o wi h he espec i e CagA-, CagE-and VacA-mu an s (C), o 24 h a a MOI o 100. A adin de ec ion by immuno luo escence ( ed)
and quan i ica ion o he luo escence in ensi y a he memb ane and he nucleus (A), and by Wes e n blo and i s quan i ica ion, using GAPDH o ubulin as loading
con ols (B,C). Scale ba , 10 µm. Da a co espond o he mean alue ±SEM and a e ep esen a i e o a leas h ee independen expe imen s. S a is ical
signi icance was e alua ed wi h he S uden ’s - es o wi h one-way ANOVA.
A adin has wo majo iso o ms, he l-A adin iso o m ha
con ains an F-ac in-binding domain, and he less exp essed
s-A adin iso o m ha lacks he F-ac in-binding domain (Buche
e al., 2007). Wes e n blo analysis wi h an an ibody ha
ecognizes he wo A adin iso o ms e ealed he p esence
in bo h cell lines o a highly exp essed 220 kDa p o ein,
co esponding o l-A adin, and ain bands abo e he 150 kDa
ma ke , co esponding o s-A adin. Silencing o A adin by
siRNA con i med he loss o he wo iso o ms (Supplemen a y
Figu e 1B). Upon in ec ion wi h H. pylo i 26695, he e was a
signi ican dec ease o he p o ein le els o A adin (Figu e 1B),
wi hou changes in he mRNA exp ession le els (Supplemen a y
Figu e 1C).
To e alua e he impac o he majo bac e ia i ulence ac o s
on H. pylo i-media ed A adin down egula ion, cells we e in ec ed
wi h H. pylo i s ain 60190 and i s espec i e CagA−, CagE−
( equi ed o a unc ional T4SS), and VacA−mu an s. As
p e iously obse ed in in ec ions wi h s ain 26695, H. pylo i
60190 was also able o signi ican ly educe A adin p o ein le els
in he wo cell lines (Figu e 1C). In ec ions wi h all o he
H. pylo i mu an s ains also led o signi ican dec eases in A adin
exp ession meaning ha loss o A adin is independen o CagA,
VacA, and any ac o deli e ed ia he T4SS (Figu e 1C). To
de e mine i sec e ed soluble bac e ial ac o s o iable bac e ia
a e in ol ed in loss o A adin, ei he condi ioned medium o
H. pylo i liquid cul u es o hea -killed H. pylo i we e incuba ed
wi h epi helial cells. The esul s e ealed ha loss o A adin
p o ein exp ession was dependen on he p esence o iable
bac e ia bu ha was no igge ed by soluble bac e ial ac o s
sec e ed by H. pylo i (Supplemen a y Figu e 1D).
H. pylo i Induces an EMT Pheno ype in
Gas ic Cells
Epi helial- o-mesenchymal ansi ion is cha ac e ized by he
ansi ion om an epi helial o a mesenchymal pheno ype, wi h
he modi ica ion o he adhesion molecules exp essed by he
cell, allowing i o adop a mig a o y and in asi e beha io
(Nie o e al., 2016). I has been shown ha H. pylo i is
able o modi y se e al cell–cell adhesion molecules (Fedwick
e al., 2005;Fio en ino e al., 2013;Schmid e al., 2016;
Teg meye e al., 2017), o induce an elonga ion in he cell
shape (Moese e al., 2004;Bou zac e al., 2007), o inc ease cell
in asion (Oli ei a e al., 2006;Cos a e al., 2016), and o up-
egula e EMT gene exp ession (Yin e al., 2010;Baud e al.,
2013). H. pylo i was also shown o al e Snail localiza ion in
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Ma ques e al. H. pylo i, A adin and EMT
bo h MKN28 cells, which o m unc ional TJs, and in human
gas ic specimens (W oblewski e al., 2015). S ill, he g ea
majo i y o hese esul s we e ob ained using gas ic cance
cell lines ha ha e de icien AJs due o mu a ions in he
E-cadhe in-encoding gene, as is he case o AGS cells. The e o e,
we wan ed o know i H. pylo i could ecapi ula e some o
hese p ope ies in ou gas ic cell line models ha es ablish
p o icien AJs.
E alua ion o he e ec s o H. pylo i on cell monolaye s,
showed ha a e 24 h o in ec ion, he e was a dec ease in
he exp ession and/o memb ane displacemen o E-cadhe in,
occludin, and ZO-1 (Figu e 2A). Concu en ly, H. pylo i
in ec ion signi ican ly educed E-cadhe in, β-ca enin, occludin,
and ZO-1 p o ein le els, bo h in MKN74 and NCI-N87 cell
lines (Figu e 2B). Fu he mo e, H. pylo i in ec ion signi ican ly
inc eased he p o ein le els o ZEB1, Vimen in, Slug, N-cadhe in,
and Snail in bo h cell lines (Figu e 2C).
These esul s con i m ha in addi ion o A adin, H. pylo i
in ec ion is able o al e junc ional complexes, dampening
epi helial cell p ope ies. These esul s u he show ha
H. pylo i-media ed inc ease in he exp ession o EMT-associa ed
ma ke s also occu s in cell lines ha es ablish AJs.
FIGURE 2 | H. pylo i induces an EMT pheno ype in epi helial gas ic cells. MKN74 and NCI-N87 gas ic cell lines we e le un ea ed o in ec ed wi h H. pylo i 26695
o a pe iod o 24 h a a MOI o 100. (A) Immuno luo escence o E-cadhe in, occludin, and ZO-1. Scale ba , 10 µm. (B) Wes e n blo and espec i e quan i ica ions
o he le els o apical junc ional complex p o eins E-cadhe in, β-ca enin, ZO-1, and occludin. Tubulin was used as loading con ol. (C) Wes e n blo and espec i e
quan i ica ions o he le els o mesenchymal ma ke s Snail, N-cadhe in, ZEB1, Slug, and Vimen in. GAPDH was used as loading con ol. Da a co espond o he
mean alue ±SEM and a e ep esen a i e o h ee independen expe imen s. S a is ical signi icance was e alua ed wi h he S uden ’s - es .
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Ma ques e al. H. pylo i, A adin and EMT
A adin Down egula ion Delocalizes AJ
and TJ P o eins, P omo es he Fo ma ion
o Ac in S ess Fibe s, and Up egula es
he EMT Ma ke Snail
To mimic he e ec o H. pylo i in ec ion on A adin
down egula ion and o e alua e he e ec o he loss o A adin in
gas ic cells, he nex expe imen s we e pe o med wi h cells ha
we e ansien ly ans ec ed wi h a siRNA o A adin o wi h a
non-silencing siRNA con ol. E icien knockdown was achie ed
in MKN74 (87%) and in NCI-N87 (54%) cells.
Since A adin is an AJC p o ein, we i s e alua ed he e ec
o A adin down egula ion on he localiza ion o AJs and TJs
p o eins in MKN74 cells. In cells ans ec ed wi h he non-
silencing siRNA, he AJs p o eins E-cadhe in and β-ca enin,
and he TJs p o eins occludin and ZO-1 p e e en ially localized
a he cell memb ane. In con as , in cells whe e A adin was
silenced, he e was an al e a ion o he memb ane localiza ion o
E-cadhe in, β-ca enin, occludin, and ZO-1 (Figu e 3A), wi hou
changes in he espec i e p o ein exp ession le els (Figu e 4A).
Al e a ions in he cellula localiza ion o hese p o eins in cells
whe e A adin was silenced we e accompanied by a s iking
change in he epi helial cell mo phology, wi h loss o he
ac in bel , o ma ion o ac in s ess ibe s, and o ma ion o
lamellipodia and ilopodia (Figu e 3A). In e es ingly, a si es
whe e A adin was no e icien ly silenced by he siRNA, cells
e ained he polyhed al epi helial mo phology wi h igh cell-
o-cell con ac s, con as ing wi h si es whe e A adin exp ession
was ully abolished by siRNA, and in which cell–cell adhesion
was los and he AJC p o eins we e disloca ed o he cy osol
(Figu e 3A). Quan i ica ion o A adin luo escence in ensi y a
he memb ane and he nucleus in bo h A adin silenced and non-
silenced cells is depic ed in Figu e 3B. A signi ican dec ease in
A adin exp ession was obse ed in bo h localiza ions in A adin
silenced cells, ein o cing he speci ici y o he A adin siRNA and
an ibody.
FIGURE 3 | A adin down egula ion displaces apical junc ional complex p o eins and p omo es he o ma ion o ac in s ess ibe s. Double immuno luo escence o
A adin ( ed) wi h AJs p o eins E-cadhe in and β-ca enin (g een), and wi h TJs p o eins ZO-1 and occludin (g een) in MKN74 cells ans ec ed wi h a non-silencing
siRNA (siNS) o wi h a siRNA o A adin (siAFDN). Immuno luo escence o ac in (g een) and o Snail ( ed) a e also shown. Nuclei we e coun e s ained wi h DAPI. Scale
ba , 10 µm. Whi e a ows ep esen cells wi h A adin no e icien ly silenced by he siRNA and ha e ain he epi helial mo phology; Yellow a ows, lamellipodia; cyan
a ows, ilopodia (A). Quan i ica ion o A adin luo escence in ensi y in MKN74 cells in bo h memb ane and he nucleus upon ea men wi h non-silencing siRNA o
wi h a siRNA o A adin (B).
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Ma ques e al. H. pylo i, A adin and EMT
FIGURE 4 | A adin down egula ion does no al e he exp ession o apical junc ional complex p o eins, bu up egula es he EMT ma ke Snail. Wes e n blo analyses
o MKN74 and NCI-N87 cells, cells ans ec ed wi h a non-silencing siRNA (siNS), o wi h a siRNA o A adin (siAFDN), e alua ing (A) apical junc ional complex
p o eins E-cadhe in, β-ca enin, ZO-1, and occludin, and (B) mesenchymal ma ke s Snail, N-cadhe in, ZEB1, Slug, and Vimen in. GAPDH was used as loading
con ol. Numbe s below he bands co espond o quan i ica ions. Da a a e ep esen a i e o h ee independen expe imen s. S a is ical signi icance was e alua ed
wi h he S uden ’s - es .
Ha ing shown ha A adin down egula ion al e s he s uc u e
o gas ic cell–cell junc ions and cell mo phology, and knowing
ha A adin nega i ely egula es he ansc ip ion o Snail o
ac i a e EMT in panc ea ic cance cells (Xu e al., 2015), we
sough o in es iga e he in ol emen o A adin in he EMT
pheno ype in he gas ic con ex . In bo h MKN74 and NCI-N87
cell lines, silencing o A adin signi ican ly inc eased he le els
o he EMT-associa ed ansc ip ion ac o Snail (Figu es 3A,
4B), bu no o he EMT ma ke s Slug, ZEB1, Vimen in, and
N-Cadhe in (Figu e 4B). O e all, hese esul s a e sugges i e ha
A adin down egula ion is implica ed in he eme gence o he
EMT pheno ype in he gas ic se ing.
A adin Down egula ion Al e s he TJ
Ba ie Func ion and Inc eases Cell
Mo ili y and In asion
Ha ing shown ha A adin silencing esul ed in delocaliza ion o
TJ and AJ p o eins om he memb ane o he cy oplasm, we nex
add essed he unc ional consequences o A adin down egula ion
in e ms o TJ in eg i y, cell mo ili y/mig a ion, and in asion.
To e alua e TJ in eg i y, cells we e seeded in answells
and allowed o each 100% con luence, a e which TER was
measu ed o e six consecu i e days, allowing cells o pola ize.
Cells whe e A adin was down egula ed had signi ican ly lowe
elec ical esis ance in compa ison o cells ans ec ed wi h he
non-silencing siRNA o o un ea ed cells, an e ec ha s a ed
o be obse ed om day 3 (Figu e 5A). Pe meabili y assays
we e pe o med on day 6, by measu ing he pe meabili y o he
gas ic monolaye s o he high molecula weigh 4 kDa dex an.
Monolaye s es ablished wi h cells whe e A adin exp ession was
silenced we e signi ican ly mo e pe meable han con ol cell
monolaye s (Figu e 5B). Simila esul s ega ding TER and
pe meabili y o FITC-4 kDa Dex an we e ound o MKN74
(Figu es 5A,B) and NCI-N87 gas ic cells (Supplemen a y
Figu es 2A,B) upon in ec ion wi h H. pylo i s ain 26695.
To analyze whe he he e was a di ec link be ween loss o
A adin and cell mo ili y/mig a ion, cells we e seeded a low
densi y, s ained wi h he lipophilic dye CM-Dil, and acked
o 24 h wi h ime-lapse mic oscopy. Analysis o he ime-lapse
mic oscopy ideos e ealed ha , e en when small g oups o cells
we e seeded, cells wi h down egula ion o A adin we e unable
o main ain cell–cell adhesion, as opposed o un ea ed cells,
o cells ans ec ed wi h he non-silencing siRNA (Figu e 5C).
Coo dina es o each indi idual cell pa h o e he 24 h pe iod we e
ep esen ed in wo-dimensional g aphs (Figu e 5D). Silencing o
A adin signi ican ly inc eased he mig a ion eloci y (Figu e 5E)
and he dis ance (Figu e 5F) co e ed by each indi idual cell,
compa ed o non-silenced o o un ea ed con ol cells. No
signi ican di e ences on di ec ionali y we e obse ed, wi h each
cell displaying a andom mig a ion pa e n.
We nex add essed he in ol emen o A adin in gas ic
cell in asion in Ma igel in asion assays. Silencing o A adin
esul ed in a wo old inc ease in he cell in asi e capaci y
compa ed o con ol cells ans ec ed wi h he non-silencing
siRNA (Figu e 5G). Inc eased cell in asion was also obse ed
upon in ec ion wi h H. pylo i s ain 26695 in bo h MKN74 cells
(Figu e 5H) and NCI-N87 cells (Supplemen a y Figu e 2C).
O e all, hese esul s sugges ha A adin plays a ole in gas ic
epi helial in eg i y by main aining he s uc u e and unc ions o
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Ma ques e al. H. pylo i, A adin and EMT
FIGURE 5 | A adin down egula ion al e s he TJ ba ie unc ion and inc eases cell mo ili y and in asion. (A) T ansepi helial elec ical esis ance (TER) measu emen s
o MKN74 gas ic cells du ing a pe iod o 6 days pos A adin silencing (siAFDN) in compa ison wi h non-silenced (siNS) and wi h un ea ed cells, and du ing 2 days
a e H. pylo i in ec ion in compa ison wi h unin ec ed cells. (B) Cell monolaye pe meabili y o 4 kDa FITC-Dex an on day 6 pos A adin silencing and on day 2 a e
H. pylo i in ec ion. (C–F) Single cell mo ili y analysis: (C) Time-lapse mic oscopy pho os o cells du ing he 24 h pe iod. (D) Rep esen a i e g aphs o he X and Y
coo dina es (in pixels, px) o each cell pa h, on a ib onec in coa ed su ace. (E) Cell eloci y in µm/minu e and (F) o al dis ance co e ed by and indi idual cell in µm.
(G,H) Cell in asion capaci y on Ma igel-coa ed answells o MKN74 cells ans ec ed wi h siNS con ol o ans ec ed wi h siAFDN (G), and o MKN74 cells
in ec ed o no wi h H. pylo i 26695 (H). Da a a e p esen ed as mean ±SEM. S a is ical signi icance was e alua ed wi h he one- and wo-way ANOVA and wi h
S uden ’s - es .
he TJs and AJs, namely p ese ing he epi helial ba ie and cell–
cell adhesion, and supp essing cell mo ili y and in asion.
H. pylo i In ec ion A ec s he Exp ession
and Localiza ion o A adin in he Human
Gas ic Mucosa
To de e mine he impac o H. pylo i in ec ion on A adin
in i o, we i s e alua ed AFDN gene exp ession using he
da a a ailable a he GTEx da abase. Da a was e ie ed
om gas ic samples o 181 indi iduals wi hou disease,
and 67 indi iduals (37%) we e iden i ied o be in ec ed
wi h H. pylo i. No s a is ically signi ican di e ences
(p= 0.30) we e obse ed be ween AFDN gene exp ession
le els in unin ec ed and H. pylo i-in ec ed pa ien s
(Figu e 6A).
The exp ession o A adin was also e alua ed by
immunohis ochemis y in a se ies o 42 issue specimens
ha ha e been cha ac e ized ega ding he his opa hological
ea u es o he gas ic mucosa and he p esence o
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