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Vulnerability of progeroid smooth muscle cells to biomechanical forces is mediated by MMP13

Abstract

Hutchinson-Gilford Progeria Syndrome (HGPS) is a premature aging disease in children that leads to early death. Smooth muscle cells (SMCs) are the most affected cells in HGPS individuals, although the reason for such vulnerability remains poorly understood. In this work, we develop a microfluidic chip formed by HGPS-SMCs generated from induced pluripotent stem cells (iPSCs), to study their vulnerability to flow shear stress. HGPS-iPSC SMCs cultured under arterial flow conditions detach from the chip after a few days of culture; this process is mediated by the upregulation of metalloprotease 13 (MMP13). Importantly, double-mutant LmnaG609G/G609GMmp13-/- mice or LmnaG609G/G609GMmp13+/+ mice treated with a MMP inhibitor show lower SMC loss in the aortic arch than controls. MMP13 upregulation appears to be mediated, at least in part, by the upregulation of glycocalyx. Our HGPS-SMCs chip represents a platform for developing treatments for HGPS individuals that may complement previous pre-clinical and clinical treatments.

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Vulnerability of progeroid smooth muscle cells to biomechanical forces is mediated by MMP13

Author: Pitrez, Patricia R.,Estronca, Luís,Monteiro, Luís Miguel,Colell, Guillem,Vazão, Helena,Santinha, Deolinda,Harhouri, Karim,Thornton, Daniel,Navarro, Claire,Egesipe, Anne-Laure,Carvalho, Tânia,Dos Santos, Rodrigo L.,Lévy, Nicolas,Smith, James C.,de Magalhã
Publisher: Springer Nature
Year: 2020
Source: https://repositorio.ulisboa.pt/bitstream/10451/46300/1/Vulnerability_smooth.pdf
ARTICLE
Vulne abili y o p oge oid smoo h muscle cells o
biomechanical o ces is media ed by MMP13
Pa icia R. Pi ez 1,2, Luís Es onca1,2, Luís Miguel Mon ei o 1, Guillem Colell3, Helena Vazão1,
Deolinda San inha 1,2, Ka im Ha hou i 4, Daniel Tho n on5, Clai e Na a o 4,6, Anne-Lau e Egesipe7,
Tânia Ca alho 8, Rod igo L. Dos San os9, Nicolas Lé y4,10, James C. Smi h 11, João Ped o de Magalhães1,5,
Alessand o O i 12, And eia Be na do 11, Annachia a De Sand e-Gio annoli 4,10,13, Xa ie Nissan 7,
Anna Rosell3& Lino Fe ei a 1,2✉
Hu chinson-Gil o d P oge ia Synd ome (HGPS) is a p ema u e aging disease in child en ha
leads o ea ly dea h. Smoo h muscle cells (SMCs) a e he mos a ec ed cells in HGPS
indi iduals, al hough he eason o such ulne abili y emains poo ly unde s ood. In his
wo k, we de elop a mic ofluidic chip o med by HGPS-SMCs gene a ed om induced plu -
ipo en s em cells (iPSCs), o s udy hei ulne abili y o flow shea s ess. HGPS-iPSC SMCs
cul u ed unde a e ial flow condi ions de ach om he chip a e a ew days o cul u e; his
p ocess is media ed by he up egula ion o me allop o ease 13 (MMP13). Impo an ly,
double-mu an LmnaG609G/G609GMmp13−/−mice o LmnaG609G/G609GMmp13+/+mice ea-
ed wi h a MMP inhibi o show lowe SMC loss in he ao ic a ch han con ols. MMP13
up egula ion appea s o be media ed, a leas in pa , by he up egula ion o glycocalyx. Ou
HGPS-SMCs chip ep esen s a pla o m o de eloping ea men s o HGPS indi iduals ha
may complemen p e ious p e-clinical and clinical ea men s.
h ps://doi.o g/10.1038/s41467-020-17901-2 OPEN
1Cen e o Neu oscience and Cell Biology, Uni e si y o Coimb a, Coimb a, Po ugal. 2Facul y o Medicine, Uni e si y o Coimb a, Coimb a, Po ugal.
3Neu o ascula Resea ch Labo a o y, Vall d’Heb on Resea ch Ins i u e, Uni e si a Au ònoma de Ba celona, Passeig Vall d’Heb on 119-129, 08035
Ba celona, Spain. 4Aix Ma seille Uni , INSERM, MMG, Ma seille, F ance. 5In eg a i e Genomics o Ageing G oup, Ins i u e o Ageing and Ch onic Disease,
Uni e si y o Li e pool, Li e pool L7 8TX, UK. 6P ogeli e, Ma seille, F ance. 7CECS, I-STEM, AFM, Ins i u e o S em Cell The apy and Explo a ion o
Monogenic Diseases, E y Cedex, F ance. 8IMM, Ins i u o de Medicina Molecula , Uni e sidade de Lisboa, Lisbon, Po ugal. 925 Camb idge Science Pa k,
Mog i y L d, Mil on Road, Camb idge CB4 0FW, UK. 10 Molecula Gene ics Labo a o y, Depa men o Medical Gene ics, La Timone Child en’s Hospi al,
Ma seille, F ance. 11 De elopmen al Biology Labo a o y, F ancis C ick Ins i u e, London NW1 1AT, UK. 12 Leibniz Ins i u e on Aging - F i z Lipmann Ins i u e,
07745 Jena, Ge many. 13 CRB Assis ance Publique des Hôpi aux de Ma seille (CRB AP-HM, TAC), Ma seille, F ance. ✉email: [email p o ec ed]
NATURE COMMUNICATIONS | (2020) 11:4110 | h ps://doi .o g/10.1038/s41467-020-17901-2 | www.na u e.com/na u ecommunica ions 1
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Hu chinson–Gil o d P oge ia Synd ome (HGPS) is caused
by a single mu a ion in he lamin A/C gene (LMNA),
esul ing in he gene a ion o an abno mal lamin A p e-
cu so named p oge in1,2. One o he key easons o p ema u e
dea h is he loss o smoo h muscle cells (SMCs) in he medial
laye o la ge a e ies, ollowed by he appea ance o collagen and
ex acellula ma ix (ECM) and he de elopmen o a se e e
a e ioscle o ic p ocess ha leads o inc eased a e ial s i ness3–5.
The easons o SMC loss emain o be de e mined. I has been
sugges ed ha his may happen due o pa hophysiological
changes inhe en o p elamin A/p oge in accumula ion, such as
he accele a ion o ascula calcifica ion ia he ac i a ion o he
DNA damage esponse and senescence-associa ed sec e o y
pheno ypes in ascula SMCs6o he down egula ion o PARP17.
I has also been shown ha he combined e ec o p oge in
accumula ion and mechanical s ess in mouse SMCs o e -
exp essing p oge in p omo ed cell de achmen and dea h, while
he dis up ion o he linke be ween nucleoskele on and cy os-
kele on complex amelio a ed he oxic e ec s o p oge in8. Nei-
he o hese s udies ha e ully add essed he easons behind SMC
de achmen and hus which he apeu ic app oach could be
e ec i e o p e en SMC loss.
Induced plu ipo en s em cells (iPSCs) o e an unlimi ed
sou ce o SMCs o s udy HGPS. Recen s udies ha e gene a ed
iPSCs om fib oblas s ob ained om indi iduals wi h HGPS
(he ea e e e ed o as HGPS-iPSCs)9–11. S ikingly, HGPS-
iPSCs show low lamin A/C and p oge in p o ein exp ession in he
plu ipo en s a e. Howe e , he exp ession o p oge in is eac i-
a ed a e HGPS-iPSC di e en ia ion in o SMCs7,9. The di e -
en ia ed cells show nuclea dysmo phology, cell g ow h
e a da ion, suscep ibili y o apop osis, p oli e a ion educ ion,
and DNA- epai de ec s; howe e , SMC pe o mance unde flow
condi ions has no been e alua ed.
In his wo k, we de elop an in i o cell sys em comp ising
SMCs de i ed om HGPS-iPSCs cul u ed unde flow condi ions
in a mic ofluidic de ice. We iden i y MMP13 as a media o o
SMC de achmen using chemical and gene ic assays. The gene -
a ed double-mu an LmnaG609G/G609GMmp13−/−mice show an
inc ease in SMCs in he ao ic a ch and a dec ease in p oge in-
posi i e cells. In addi ion, he inhibi ion o MMP13 in
LmnaG609G/G609G mice by Ba imas a , a d ug ha has been p e-
iously es ed in clinical ials in cance pa ien s, educes SMC
loss. The esul s p esen he e open pe spec i es o HGPS
ea men .
Resul s
SMCs de i ed om HGPS-iPSCs a e unc ional and sha e
simila ea u es o p oge in-exp essing cells. iPSCs we e gen-
e a ed om HGPS skin fib oblas s and cha ac e ized as p e-
iously desc ibed10. iPSCs gene a ed om non-disease cells (N-
iPSCs), HGPS skin fib oblas s, and non-disease soma ic human
ascula smoo h muscle cells (hVSMCs) we e used as con ols.
The mu a ion in he LMNA gene, bo h in HGPS skin fib oblas s
and HGPS-iPSCs, was confi med by Sange sequencing (Sup-
plemen a y Fig. 1). As expec ed, undi e en ia ed HGPS-iPSCs
exp essed low le els o HGPS ma ke s, such as p oge in, as well as
low le els o SMC ma ke s, such as α-SMA and SMα-2212,13
(Supplemen a y Fig. 2a). To induce he di e en ia ion o HGPS-
iPSCs o N-iPSCs in o SMCs, CD34+cells we e isola ed by
magne ic-ac i a ed cell so ing om emb yoid bodies (EBs) cul-
u ed o 10 days in suspension (Fig. 1a)14. A his s age, HGPS-
CD34+cells al eady exp ess highe le els o p oge in mRNA
ansc ip s ela i e o N-iPSCs bu ela i ely low le els o SMC
mRNA ansc ip s compa ed wi h soma ic hVSMCs (Supple-
men a y Fig. 2b). HGPS-CD34+cells we e hen cul u ed in SMC
induc ion media (Supplemen a y Fig. 3) ollowed by SMC
ma u a ion media (Supplemen a y Fig. 4) o an addi ional ou
passages. Ma u ed SMCs a e e e ed o as HGPS-iPSC SMCs o
N-iPSC SMCs based on hei pheno ype, geno ype, and unc-
ional p ope ies (see below). Bo h HGPS-iPSC SMCs and N-
iPSC SMCs ha e simila o highe exp ession o SMC mRNA
ansc ip s han soma ic hVSMCs (Supplemen a y Fig. 4a).
G ea e han 95% o bo h di e en ia ed cells exp ess α-SMA,
smoo h muscle myosin hea y chain (SMMHC), and calponin
p o eins (Fig. 1b). Mo eo e , HGPS-iPSC SMCs exp ess p oge in
mRNA ansc ip s (Fig. 1c) and p oge in p o ein (Supplemen a y
Fig. 4b, c). Simila esul s we e ob ained o SMCs de i ed om
HGPS-iPSCs gene a ed om a second P oge ia indi idual; how-
e e , he di e en ia ed cells showed highe p oge in p o ein le els
han he fi s P oge ia indi idual (Supplemen a y Fig. 5).
Impo an ly, HGPS-iPSC SMCs and N-iPSC SMCs a e unc ional
as hey espond o asoac i e agen s such as his amine and
angio ensin (Supplemen a y Fig. 4d) and hey con ac a e
exposu e o ca bachol (Supplemen a y Fig. 4e).
SMCs de i ed om HGPS-iPSCs sha e simila ea u es o
p oge in-exp essing cells. Cell lines o ced o exp ess p oge in
show he ac i a ion o se e al NOTCH signaling pa hway
e ec o s15. Indeed, ou esul s showed ha HGPS-iPSC CD34+
cells had highe exp ession o NOTCH signaling pa hway mRNA
ansc ip s han N-iPSC CD34+cells (Supplemen a y Fig. 6).
Ma u e HGPS-iPSC SMCs also exp essed highe le els o NOTCH
ligand and ecep o s han N-iPSC SMCs (Supplemen a y Fig. 6a).
In addi ion, HGPS-iPSC SMCs esponded o a nesyl ans e ase
inhibi o s, as has been shown in o he P oge ia cell models16–18.
In he cu en wo k, HGPS-iPSC SMCs ea ed wi h lona a nib o
48 h accumula ed nuclea p elamin A and showed a dec ease in
nuclea shape abno mali ies and nuclea blebbing (Supplemen a y
Fig. 7a–c). Taken oge he , he cells di e en ia ed om HGPS-
iPSCs-exp essed SMC and p oge oid ma ke s, a e unc ional and
exhibi physiological esponses.
HGPS-iPSC SMCs a e ulne able o a e ial shea s ess. SMCs
di e en ia ed om N-iPSCs o HGPS-iPSCs we e seeded in a
mic ofluidics sys em and cul u ed unde flow condi ions o up o
7 days (Fig. 1d). Because SMCs om la ge a e ies a e he mos
a ec ed in blood essels in HGPS, we used a flow o 20 dyne/cm2,
which is ypically ound in a e ial blood essels19. N-iPSC SMCs
(Fig. 1g), hVSMCs, o HGPS fib oblas s (80% o which exp ess
p oge in) (Fig. 1e, g) can be cul u ed in he mic ofluidics sys em
o a leas 7 days wi hou a isible loss in cell numbe . In con-
as , HGPS-iPSC SMCs cul u ed unde flow condi ions o med
cell clumps o e ime (Fig. 1 ), and mos o he cells de ached om
he subs a e a day 4 as confi med by cell numbe (Fig. 1g) and
me abolic analyses (Fig. 1h). Du ing his ime pe iod, he pe -
cen age o cells exp essing p oge in and displaying nuclea
abno mali ies inc eased significan ly un il day 4 (Supplemen a y
Fig. 8). Ou esul s indica e ha SMC de achmen is media ed by
p oge in accumula ion, as he inhibi ion o p oge in by an isense
mo pholinos20 significan ly dec eased HGPS-iPSC SMC de ach-
men (Supplemen a y Fig. 9). In addi ion, we showed ha HGPS-
iPSC SMCs wi h high p oge in exp ession (30% o he cells
exp ess p oge in a day 0) de ached om he su ace o he
mic ofluidics sys em in a sho ime (<12 h) (Supplemen a y
Fig. 5g). To confi m ha p oge in accumula ion is esponsible o
SMC loss, a ameshi mu an s em cell line was gene a ed
(HGPSΔ2-iPSCs) o knockou he HGPS mu an allele and gen-
e a ed a disease cell line, as p e iously desc ibed in he mouse21
(Fig. 2a and Supplemen a y Fig. 10). Specifically, a wo-base pai
dele ion on exon 11, ups eam o he HGPS poin mu a ion
(1814C>T), was gene a ed. No ably, HGPSΔ2-iPSCs exp essed
ARTICLE NATURE COMMUNICATIONS | h ps://doi.o g/10.1038/s41467-020-17901-2
2NATURE COMMUNICATIONS | (2020) 11:4110 | h ps://doi.o g/10.1038/s41467-020-17901-2 | www.na u e.com/na u ecommunica ions
li le o no p oge in upon di e en ia ion in o SMCs as demon-
s a ed a he ansc ip and p o ein le els and did no de ach
unde flow cul u e condi ions (Fig. 2).
HGPS-iPSC SMC de achmen does no seem o be media ed by
cell apop osis. Be o e cell de achmen , HGPS-iPSC SMCs showed:
(i) poo p oli e a ion (as moni o ed by Ki67 s aining) confi ming
hei con ac ile pheno ype (Fig. 1i), (ii) simila le els o apop osis
as N-iPSC SMCs as confi med by caspase-9 ac i i y (Fig. 1j), (iii)
an os eogenic di e en ia ion p og am (Supplemen a y Fig. 11a,
b), (i ) inc eased DNA damage6(Supplemen a y Fig. 12), and ( )
down egula ion o NOTCH15,22 (Supplemen a y Fig. 13) signal-
ing pa hways. Because he in i o shea s ess om blood flow is
no di ec ly sensed by SMCs bu by endo helial cells (ECs), we co-
cul u ed SMCs di e en ia ed om HGPS-iPSCs (di ec ly
a ached o he mic ofluidics subs a e) wi h human umbilical
a e y ECs (HUAECs, on op o he SMCs) unde flow condi ions.
Ini ially, we sc eened di e en cul u e condi ions and we ound
ha endo helial g ow h media-2 (EGM-2) medium was a sui able
medium o suppo bo h cells (Supplemen a y Fig. 14). Then, we
co-cul u ed HUAECs and HGPS-iPSC SMCs a di e en a ios
(1.6, 1, and 0.6) unde flow condi ions. In all he a ios es ed, we
had a monolaye o HUAECs (Supplemen a y Fig. 15a) and
HGPS-iPSC SMCs a ime ze o. A e 6 days in flow condi ions, a
significan pe cen age (>40%) o HGPS-iPSC SMCs was los
(Supplemen a y Fig. 15b). Fo he highes a io es ed (1.6), he
loss o HGPS-iPSC SMCs occu ed wi hou isible loss o ECs.
Ye , o EC:SMC a ios below 1, pa o ECs also de ached om
he mic ofluidic chambe indica ing ha , a low ECs densi y,
may u n ECs ulne able o flow condi ions. Impo an ly, cell
ulne abili y o flow condi ions was only obse ed in co-cul u es
***
**
101
100
10–1
10–2
10–3
10–4
10–5
Rela i e gene exp ession
LMNA
LMNB1
P oge in
N-iPSC-SMCs
HGPS-iPSC-SMCs
HGPS ib oblas s
*
**** ****
****
246
0
10,000
20,000
30,000
40,000
0
5
10
15
Cell clumps
A ea o cell clumps
Time (days)
A ea o cell clumps (μm
2
)
Cell clumps (numbe /μm
2
)(x10
6
)
04 04 04
0
50
100
No malized caspase 9 ac ici y
HGPS-iPSC SMCs
N-iPSC SMCs
HGPS ib oblas s
Time (days)
****
*
**
p < 0.0001
p = 0.0123
p = 0.0084
0246
0.0
0.5
1.0
1.5
2.0
Time in low shea
s ess (days)
No malized cell numbe
HGPS-iPSCs-SMCs
HGPS ib oblas s
hVSMCs
N-iPSCs-SMCs
***
0246
0.0
0.2
0.4
0.6
0246
Cell me abolism
Cell p oli e a ion
Cell apop osis
Time in low shea
s ess (days)
Me abolic ac i i y
hVSMCs
HGPS-iPSCs-SMCs
N-iPSCs-SMCs
HGPS ib oblas s
***
e
h
Day 1 Day 4 Day 6
Day 1
HGPS Fib oblas s
Day 7
HGPS-iPSC SMCs
hVSMCs
Day 8
g
0
20
40
60
80
% Ki67 posi i e cells
N-iPSCs-SMCs
HGPS-iPSCs-SMCs
HGPS ib oblas s
04 04 40
Time (days)
****
****
*
p < 0.0001
p < 0.0001
p = 0.0305
ij
d
a
Days
Cell coun ing
0
20
40
60
80
100
120
% o cells
N-iPSC-SMCs
HGPS-iPSC-SMCs
α-SMA
SMMHC
Calp
b
Di e en ia ion
in suspension
CD34+ cells
Undi e en ia ed
cell colony
4 Passages (≈15 d)
Induc i e media
4 Passages (≈15 d)
Ma u a ion media
HGPS-iPSC SMCs
N-iPSC SMCs
c
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o HGPS-iPSC SMCs bu no N-iPSC SMCs (Supplemen a y
Fig. 15c).
I has been shown ha a knock-in mouse line ca ying a
homozygous Lmna c.1827C>T;p.Gly609Gly mu a ed allele
(LmnaG609G/G609G) ecapi ula es mos o he desc ibed al e a ions
associa ed wi h HGPS, including he loss o SMCs20. Thus, o
alida e he esul s ob ained o he HGPS-iPSC SMCs, we
isola ed SMCs om wild- ype (WT mSMC) and homozygous
LmnaG609G/G609G (HOZ mSMC) mice. Bo h cells exp essed
calponin and α-SMA, while HOZ mSMCs, bu no WT SMCs,
showed dysmo phic nuclei and nuclea blebbing (Fig. 3a, b). WT
mSMCs we e cul u ed unde flow condi ions (120 dyne/cm2 o
mimic mice a e ial flow shea s ess23,24) o up o 26 days
wi hou isible loss o cells (Fig. 3c). In con as , HOZ mSMCs
de ached om he subs a e a e 8–9 days. These esul s confi m
ha HOZ mSMCs a e ulne able o flow shea s ess simila o
HGPS-iPSC SMCs. O e all, ou esul s indica e ha HGPS-iPSC
SMCs a e ulne able o flow shea s ess, as in he case o SMCs
isola ed om mice ca ying a HGPS-like mu a ion in he Lmna
gene.
HGPS-iPSC SMCs ha e significan changes in ex acellula
ma ix (ECM) sec e ion and MMP exp ession. To gain insigh s
in o he mechanism behind SMC de achmen , we pe o med
mic oa ay analyses on HGPS-iPSC SMCs and N-iPSC SMCs a
days 0 and 4 (be o e cell de achmen ). A day 0, 2084 genes we e
di e en ially exp essed (Log2FC ≥1; p< 0.05) in HPGS-iPSC
SMCs s. N-iPSC SMCs. O hese genes, 51 genes we e associa ed
wi h cell senescence, as de e mined by he in e sec ion o all he
di e en ially exp essed genes wi h he CellAge da abase25 (279
genes) (Supplemen a y Da a 1). A he p o ein le els, HGPS-iPSC
SMCs exp essed highe le els o p21 and SA-β-galac osidase han
N-iPSCs-SMCs and he le el o senescence ma ke s inc eased
a e cul u e o HGPS-iPSC SMCs in flow condi ions (Supple-
men a y Fig. 16a and Supplemen a y Da a 5). We nex pe o med
pa hway analysis on he di e en ially exp essed genes om
HGPS-iPSC SMCs a day 0 s. day 4 (Supplemen a y Fig. 17 and
Supplemen a y Da a 2, 3). In gene al, ECM ac i a ion, sec e ion,
and cell adhesion pa hways we e up egula ed, whe eas cell cycle
and DNA eplica ion pa hways we e down egula ed unde
a e ial flow condi ions a day 4. Among he fi y-se en genes ha
we e a leas h ee old down- o up egula ed compa ed wi h day 0
(p< 0.001) (Fig. 4a), fi e we e ela ed o ECM sec e ion (COL6A3,
IBSP, BGN, SGCG, and EPPK1) and one o me allop o eases
(MMP13). The exp ession o hese genes, as well as o he s, was
confi med by qRT-PCR (Fig. 4a), and he molecula ne wo k o
genes ha we e di e en ially exp essed be ween days 0 and 4 in
he HGPS-SMCs was examined by Ingenui y Pa hway Analysis
(Supplemen a y Fig. 17). In e es ingly, pa hway analysis sug-
ges ed ha MMP13 is ei he a di ec o indi ec a ge o mul iple
genes up egula ed a day 4. Mo eo e , MMP13 ansc ip le els
a e ele a ed in HGPS-iPSC SMCs when compa ed wi h SMCs
gene a ed om he a enua ed disease e sion o his line
(HGPSΔ2-iPSC SMCs), specially pos shea s ess (Fig. 2g).
To u he explo e he gene a ay esul s, we e alua ed whe he
he p esence o ECM sec e ed by hVSMCs could p e en he
de achmen o HGPS-iPSC SMCs unde a e ial flow condi ions.
Thus, we cul u ed HGPS-iPSC SMCs on decellula ized ECM
deposi ed by hVSMCs o di ec ly on op o mi o ically inac i a ed
hVSMCs (Supplemen a y Fig. 18). Bo h condi ions we e unable
o p e en HGPS-iPSC SMC de achmen . Nex , we es ed whe he
condi ioned media collec ed om HGPS-iPSC SMCs in flow
condi ions o 4 days could induce he de achmen o flow shea
s ess-insensi i e hVSMCs (Fig. 4b). Su p isingly, hVSMCs
de ach a e pe usion wi h HGPS-iPSC SMC-condi ioned media
bu no wi h N-iPSC SMC-condi ioned media (Fig. 4c). Following
hese esul s and gi en ha MMP13 appea s o be he
downs eam e ec o o he genes mis egula ed a day 4
(Supplemen a y Fig. 17b) we decided o quan i y he concen a-
ion o MMP13 in HGPS-iPSC SMC and N-iPSC SMC cul u e
media a e flow shea s ess. Rema kably, MMP13 le els
inc eased 30- old in he HGPS-iPSC SMC cul u e media, bu
no in he con ol cell cul u e media (Fig. 4d). Simila ly, highe
MMP13 le els we e obse ed in media collec ed om HOZ
mSMCs unde flow shea s ess, when compa ed wi h media om
WT mSMCs (Fig. 3d). Because MMP13 is p oduced by cells as an
inac i e o m (p oMMP13), which is hen ac i a ed by cell
memb ane MMPs, namely MMP14 (also called MT1-MMP) and
MMP2 (also called gela inase A)26, he ca aly ic ac i i y o
MMP13 sec e ed by HGPS-iPSC SMCs was analyzed (Supple-
men a y Fig. 19). The concen a ion o p oMMP13 and ac i e
MMP13 inc eased app oxima ely eigh - and fi e- old, espec-
i ely, in cul u e media o HGPS-iPSC SMCs cul u ed in flow
condi ions om day 0 o day 4. Mo eo e , he concen a ion o
p oMMP13 and ac i e MMP13 in cell cul u e media collec ed
om N-iPSC SMCs cul u ed in flow condi ions o 4 days was
mo e han ou old lowe han he one obse ed wi h HGPS-iPSC
SMCs. Al oge he , ou esul s indica e ha HGPS-iPSC SMCs
cul u ed unde flow condi ions showed inc eased cell senescence,
ECM ac i a ion, sec e ion, and cell adhesion pa hways up egula-
ion and dys egula ion in he exp ession o MMP13.
Fig. 1 Vulne abili y o HGPS-iPSC SMCs o a e ial flow condi ions. a Schema ic ep esen a ion o he me hodology used o di e en ia e iPSCs in o
SMCs. bExp ession o SMC ma ke s on iPSC-de i ed SMCs. Pe cen age o posi i e cells exp essing SMC ma ke s as e alua ed by immunofluo escence (a
leas 100 cells we e coun ed pe each ma ke ). Resul s a e mean ± SEM (n=3 independen expe imen s). cExp ession o p oge ia ma ke s on iPSC-
de i ed SMCs. Gene exp ession by qRT-PCR (gene exp ession was no malized by he housekeeping gene GAPDH). HGPS fib oblas s we e used as con ol.
Resul s a e mean ± SEM (n=4 echnical eplica es om a pool o h ee independen expe imen s). *, **, ***, **** deno e s a is ical significance (p< 0.05,
p< 0.01, p< 0.001, p< 0.0001). S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s pos es . dSchema ic
ep esen a ion o he p o ocol used. Cells we e cul u ed o 6–8 days in a e ial flow condi ions (20 dyne/cm2). eLigh mic oscopy images o HGPS
fib oblas s, hVSMCs, o HGPS-iPSC SMCs (10% o he cells accumula e p oge in p o ein) a di e en cul u e days. Only HGPS-iPSC SMCs de ached om
he mic ofluidic sys em a day 4. Scale ba is 50 μm. Numbe and a ea o cell clumps in HGPS-iPSC SMCs a di e en imes (a leas wo images (×10)
ha e been quan ified pe ime). Fo a ea o cell clumps n> 2 images examined o e h ee independen expe imen s; o cell clumps, n=3 independen
expe imen s. gNumbe o cells pe su ace a ea (mm2) du ing cell cul u e unde a e ial flow (a leas h ee images (×10) ha e been quan ified pe ime;
n=3–7 independen expe imen s). Cell numbe was no malized by he numbe o cells p esen a day 0. hCell me abolism e alua ed by he P es o Blue
assay. Abso bance a 570 nm was measu ed and no malized o he 600-nm alues o he expe imen al wells. n=3 independen expe imen s. iExp ession
o nuclea p oli e a ion ma ke , Ki67 (a leas h ee images (×10) ha e been quan ified pe ime). The pe cen age o Ki67 posi i e cells was e alua ed by
immunofluo escence. n> 3 images examined o e h ee independen expe imen s. jCell apop osis e alua ed by caspase-9 ac i i y. Resul s we e
no malized by cell numbe . n=3 independen expe imen s. F om c o g, esul s a e mean ± SEM. *, **, ***, **** deno e s a is ical significance (p< 0.05, p<
0.01, p< 0.001, p< 0.0001). S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es iand j.
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MMP13 media es HGPS-iPSC SMC loss unde flow condi ions.
Nex , we es ed whe he he chemical inhibi ion o MMPs could
p e en HGPS-iPSC SMC de achmen . Fo his pu pose, we used
Ba imas a (BB-94)27, a b oad spec um ma ix me allop o ease
inhibi o (IC50 =33 nM o MMP1328), and a specific MMP13
inhibi o py imidine-4,6-dica boxylic acid, bis-(4-fluo o-3-
me hyl-benzylamide) (IC50 =8 nM)29. Rema kably, bo h inhi-
bi o s significan ly dec eased he de achmen o HGPS-iPSC
SMCs cul u ed unde a e ial flow condi ions (a leas un il day
12) (Fig. 4e), and his e ec was much supe io o ha o lona-
a nib (Supplemen a y Fig. 7d) o inhibi ion h ough he py -
ophospha e calcifica ion p ocess30 (Supplemen a y Fig. 11c). To
confi m hese esul s, HGPS-iPSC SMCs we e subjec ed o siRNA
knockdown o MMP13 and cul u ed unde a e ial flow condi-
ions o 10 days (Fig. 4 , g). Ou esul s show ha he knock-
down o MMP13 in SMCs inc eased he s abili y o HGPS-iPSC
SMCs in flow cul u e condi ions compa ed wi h non- ea ed
cells. We also analyzed he e ec s o MMP13 and BB94 inhibi ion
in HOZ mSMCs (Fig. 3e). Simila o wha was obse ed wi h
HGPS-iPSC SMCs, he de achmen was significan ly delayed
when one o he inhibi o s was used. To u he demons a e he
impo ance o MMP13 in HGPS-iPSC SMC de achmen , we
en o ced he exp ession o MMP13 in soma ic SMCs (hVSMCs)
and cul u ed he modified cells in flow cul u e condi ions
0246
0.0
0.5
1.0
1.5
2.0
No malized cell numbe
(by day 0)
Time (days)
HGPS-iPSC SMCs
HGPSΔ2-iPSC SMCs
****
Calp
SMMHC
0
30
60
90
120
% o cells
Lamin A
P oge in
D.Nuclei
Blebbing
0
30
60
90
120
% o cells
LMNA G608G exp ession
****
HGPS ib oblas s
HGPS-iPSC SMCs
HGPSΔ2-iPSC SMCs
p < 0.0001
Mo phology Nuclei Lamin A Nuclei P oge in
bNuclei SMMHC Nuclei Calponin
cd
e
a
100
10–1
10–2
10–3
100
10–1
10–2
10–3
10–4 10–4
MMP13 exp ession
HGPS-iPSC SMCs
LMNA gene locus
Exon 11
HGPS allele
HGPS Poin Mu a ion Si e
Ch omosome 1
sgRNA
PAM
5’
3’ 5’
3’
3’
3’
3’
3’
3’
3’
5’
5’
5’
5’
5’
5’
WT allele
N-iPSCHGPS-iPSC
HGPSΔ2-iPSC
WT allele
WT allele
WT allele
HGPS allele
HGPSΔ2-iPSC SMCs
04
Time (days)
**
**
***
p = 0.0035
p = 0.0002
p = 0.0016
g
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Fig. 2 Exp ession o p oge ia and SMC ma ke s in HGPSΔ2-iPSC SMCs. a gRNA di ec s Cas9 nuclease agains mu a ed exon 11 o LMNA gene, ups eam
he HGPS mu a ion, dis up ing p oge in, wi hou al e ing lamin A and lamin C. Sange sequencing o LMNA (NM_170707.4 ansc ip ) exon 11 was
pe o med o : N-iPSCs, HGPS-iPSCs and HGPSΔ2-iPSCs, confi ming he dele ion o wo-base pai s in he HGPSΔ2-iPSCs. bExp ession o lamin A,
p oge in, and SMC p o eins moni o ed by immunofluo escence. Scale ba is 100 μm. n=6 independen expe imen s. cExp ession o p oge in (LMNA
G608G gene) in HGPS and HGPSΔ2 cell lines. Resul s a e mean ± SEM (n=4 echnical eplica es om a pool o h ee independen expe imen s).
S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . dQuan ifica ion o lamin A, p oge in, dysmo phic nuclei, and nuclei blebbing.
Resul s a e mean ± SEM (n=6 independen expe imen s). **** deno es s a is ical significance (p< 0.0001). ePe cen age o cells ha ha e been
di e en ia ed om HGPSΔ2-iPSCs ha exp ess SMC ma ke s a p o ein le el. Resul s a e mean ± SEM (n=5–6 independen expe imen s). Numbe o
cells pe su ace (mm2) as quan ified by high-con en mic oscopy (a leas h ee images (×10) ha e been quan ified pe ime). The numbe o cells was
e alua ed a e 6 days unde a e ial flow and was no malized by he numbe o cells p esen a day 0. n> 3 images examined o e h ee independen
expe imen s. gMMP13 mRNA ansc ip s quan ified by qRT-PCR analyses in HGPS-iPSC SMCs o HGPSΔ2-iPSC SMCs cul u ed unde flow condi ions.
MMP13 mRNA ansc ip s we e no malized by GAPDH.n=4 echnical eplica es om a pool o h ee independen expe imen s. **, *** deno e s a is ical
significance (p< 0.01, p< 0.001). S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es .
08 08
0.00
0.01
0.02
0.03
Concen a ion o MMP13 (pg/cell)
**
HOZ mSMCs
WT mSMCs
Time (days)
p = 0.0022
D. Nuclei
Blebbing
Calponin
α-SMA
0
20
40
60
80
100
0
20
40
60
80
100
% o cells
% o cells wi h o ganized ibe s
ab
WT mSMCs HOZ mSMCs
0 5 10 15
0
20
40
60
80
100
120
Time (days)
% o adhe ed cells
HOZ
HOZ MMP13i
HOZ BB94
d
Lamin A α-SMA
0
20
40
60
80
100
120
% o adhe ed cells
Time (days)
03926
HOZ mSMC
WT mSMC
****
ce
Fig. 3 Cha ac e iza ion and impac o flow shea s ess in SMCs isola ed om wild- ype (WT) and homozygous (HOZ) LmnaG609G/G609G mice. a
Mouse SMCs we e cul u ed o 9–26 days in a e ial flow condi ions (120 dyne/cm2). Immunofluo escence analyses pe o med on mouse SMCs (6-week-
old WT and HOZ Lmna G609G/G609G mice) a passage 4 o α-SMA and Lamin A. Nuclei we e s ained wi h DAPI. Scale ba is 20 µm. n=3–4 images
examined o e h ee independen expe imen s. bPe cen age o dysmo phic nuclei, nuclei blebbing, and SMC o ganized fibe s in mSMCs (assessed in
s a ic condi ions). n=3-4 images examined o e h ee independen expe imen s. cPe cen age o adhe ed cells o e ime. Cells we e cul u ed unde
flow condi ions. n=3–4 independen expe imen s. S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s pos es .
dQuan ifica ion o MMP13 in HOZ mSMCs and WT mSMCs. Cells we e analyzed a day 0 and day 8 unde flow. Fluo escence signal was no malized by
cell numbe . n=3–4 independen expe imen s. S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . ePe cen age o adhe ed cells
o e ime. Cells we e cul u ed unde flow condi ions. n=5–6 independen expe imen s. In g aphs b–e, esul s a e mean ± SEM. *,**,***,**** deno e
s a is ical significance (p< 0.05, p< 0.01, p< 0.001, p< 0.0001).
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(Supplemen a y Fig. 19). No ably, he numbe o cells obse ed a
day 7 is lowe han he one obse ed in WT cells indica ing ha
some o he modified cells we e los du ing he flow cul u e
condi ions.
We hen asked whe he he modula ion o MMP13 ac i i y
could a ec p oge in exp ession associa ed wi h he ulne abili y
o HGPS-iPSC SMCs o flow shea s ess. In e es ingly, chemical
inhibi ion o MMP13 in HGPS-iPSC SMCs cul u ed o 7 days in
flow condi ions educed he pe cen age o p oge in-posi i e cells
(Fig. 4h); howe e , i did no dec ease p oge in exp ession in cells
wi h high le els o p oge in, such as HGPS fib oblas s. In
addi ion, he chemical inhibi ion o MMP13 did no educe he
ac i i y o alkaline phospha ase in HGPS-iPSC SMCs cul u ed o
7 days in flow condi ions (Fig. 4i). O e all, he esul s ob ained
012 24 36 48
0
25
50
75
100
125
150
Time (h)
% o adhe ed hVSMCs
HGPS-iPSC SMC CM
N-iPSC SMC CM
Non- ea ed
BB94
MMP13i
BB94
MMP13i
0.0
04040404
0.5
1.0
1.5
2.0
No malized cell numbe
o day 0
d7 d12
****
****
****
****
0
50
100
150
% o cells wi h p oge in
HGPS ib oblas s
HGPS-iPSC SMCs
MMP13 inhibi ion
–+–
+
****
p < 0.0001
0.00
0.01
0.02
0.03
0.04
Rela i e gene exp ession
***
No ans ec ion
siRNA con ol
siRNA MMP13
***
0
2
4
6
8
Concen a ion o
MMP13 (x10–4, pg/cell)
****
*
*
Time (days)
HGPS-iPSC SMCs
N-iPSC SMCs
hVSMCs
HGPS ib oblas s
p < 0.0001
p = 0.0156
p = 0.0417
EPS8
NR4A3
PXK
OLFML2A
LIPH
AMTN
TNFAIP6
ANGPTL4
EPPK1
SESN2
SGCG
MMP13
IBSP
HAS3
COL6A3
BGN
–4
–2
0
2
4
6
8
10
12
14
Fold change
HGPS-iPSC SMCs
N-iPSC SMCs
***
****
***
** ***
****
**
*
**
** ***
**
****
*
****
p = 0.0023
–6–4–20246
10–7
10–6
10–5
10–4
10–3
10–2
10–1
100
Log2 ( old change)
4 days Concen a ion o MMP13
E ec o media in he de achmen o hVSMCs
MMP13 inhibi ion
4 – 12 days
Cell de achmen
P oge in accumula ion
Alkaline phospha ase ac i i y
ec
b
d
710
0
10
20
30
40
Time (days)
Fold o con ol
( ans ec ed wi h con ol siRNA)
hi
0
1
2
3
4
5
Alkaline phospha ase ac i i y
no malized by cell numbe
MMP13 inhibi ion
+–
a
p- alue
g
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a e chemical and gene ic inhibi ion, he inc ease o MMP13
a e flow shea s ess and he e ec o HGPS-iPSC SMC-
condi ioned media on cell de achmen , indica e ha MMP13
media es SMC loss.
Inhibi ion o MMP13 in LmnaG609G/G609G mice significan ly
inc eased he numbe o SMCs in ao ic a ch.Toconfi m he
impo ance o MMP13 dys egula ion in p oge oid animal models,
we quan ified MMP13 in he plasma o LmnaG609G/G609G and WT
mice (Fig. 5a). The esul s showed ha he le els o MMP13 we e
highe in mu an mice (Fig. 5b). Then, we asked whe he he
inhibi ion o MMP13 in LmnaG609G/G609G mice could dec ease
SMC loss. Fo his pu pose, we gene a ed double-mu an lines,
LmnaG609G/G609GMmp13−/−and LmnaG609G/G609GMmp13+/−
(Supplemen a y Fig. 20), and e alua ed he hea a e and SMC loss
in he ao ic a ch20 o hese mice a week 10 (Fig. 5a). Hea a e
waschosenasameasu eo heo e allheal hs a uso heHGPS
model and he de i ed double-mu an lines, gi en ha b adyca dia
was a clinical abno mali y e idenced in bo h LmnaG609G/G609G
mouseaswellasZmps e24
−/−p oge ia mouse models20,31.
Bo h double-mu an mice showed highe hea a es (Fig. 5d)
and numbe s o SMCs (Fig. 5c, e) in he ao ic a ch han
LmnaG609G/G609G Mmp13+/+mice. In e es ingly, LmnaG609G/G609G
Mmp13−/−and LmnaG609G/G609GMmp13+/−mice showed a lowe
numbe o p oge in-posi i e cells in he ao ic a ch han non-
mu a ed mice (Fig. 5c, ). In addi ion, LmnaG609G/G609GMmp13+/−
mice (bu no LmnaG609G/G609GMmp13−/−mice) showed an
inc ease o he ao ic media hickness being simila o he non-
mu a ed mice (Fig. 6a), as confi med by o cein s aining. We
pe o med p o eomic analyses o ao ic a ches om mu a ed and
non-mu a ed mice (n≥5 mice pe s ain) using da a independen
acquisi ion mass spec ome y32,33. P incipal componen analysis
based on 2260 p o eins de ec ed showed ha he p o eome p ofiles
o ao ic a ches om LmnaG609G/G609GMmp13+/−mice we e mo e
closely ela ed o he p ofile o WT mice o ha o LmnaG609G/
G609G Mmp13+/+mice (Fig. 6c). F om he 161 p o eins di e en-
ially exp essed be ween he mu an and WT mice ao ic a ches (q
<0.05andabs(log
2
old change) > 0.58), ~25% o he p o eins had
simila exp ession in LmnaG609G/G609GMmp13+/−mice and WT
mice (Fig. 6c and Supplemen a y Da a 4).
Mo i a ed by hese esul s, we hen es ed a he apeu ic
app oach o educe SMC loss in LmnaG609G/G609G Mmp13+/+
mice. Fo his pu pose, we used Ba imas a because human
sa e y has been p e iously demons a ed in clinical ials34.
LmnaG609G/G609G Mmp13+/+mice a week 5 we e in ape i oneal
(IP) injec ed fi e imes a week (Fig. 7a). A week 10, Ba imas a -
ea ed LmnaG609G/G609G Mmp13+/+mice had simila hea a es
o non- ea ed animals (Fig. 7c); howe e , hey showed highe
SMCs in he ao ic a ch han non- ea ed mice, as confi med by
cell nuclei coun s and e ified by he inc ease le els o SMC
ma ke s de e mined by qRT-PCR analyses (Fig. 7b, d, e). No
di e ences we e obse ed be ween non- ea ed and Ba imas a -
ea ed mice ega ding p oge in accumula ion in he ao ic a ch
(Supplemen a y Figs. 20c). O e all, ou da a shows ha he
in i o inhibi ion o MMP13 by gene ic o chemical in e en ions
yielded mice ha ing significan ly highe numbe s o SMCs in he
ao ic a ch.
Ac i a ion o MMP13 is media ed by he ac i a ion o he
glycocalyx. The glycocalyx is a su ace laye o p o eoglycans and
glycosaminoglycans ha a e immobilized in he cell memb ane.
Glycocalyx componen s ha e been shown o be in ol ed in flow
shea s ess sensing by SMCs35,36. To iden i y he mechanism
unde lying he up egula ion o MMP13 in HGPS-iPSC SMCs
cul u ed unde a e ial flow, we analyzed glycocalyx gene mRNA
ansc ip s (Fig. 8b). In e es ingly, glycocalyx ansc ip s we e
up egula ed in HGPS-iPSC SMCs cul u ed unde flow condi ions
o 4 days (Fig. 8b). F om hese up egula ed genes, syndecan 2
gene (SDC2), which encodes he ansmemb ane ( ype I) hepa an
sul a e p o eoglycan, was also up egula ed in hVSMCs o N-iPSC
SMCs cul u ed o 4 days in flow condi ions (Supplemen a y
Fig. 21). Because no all he glycocalyx mRNA ansc ip s we e
up egula ed in hVSMCs and N-iPSC SMCs, he esul s sugges
ha he composi ion o glycocalyx is likely di e en in hese cells
when compa ed wi h HGPS-iPSC SMCs. Nex , we analyzed he
exp ession o hepa an sul a e a he p o ein le el. In con as o
con ol cells, he exp ession o hepa an sul a e inc eased when
HGPS-iPSC SMCs we e cul u ed unde flow condi ions (Fig. 8a).
Impo an ly, he enzyma ic clea age o hepa an sul a e by
hepa inase III (Supplemen a y Fig. 22) dec eased MMP13 con-
cen a ion in he cell cul u e media (Fig. 8c) and significan ly
dec eased he de achmen o HGPS-iPSC SMCs cul u ed unde
flow condi ions (Fig. 8d). Mo eo e , he enzyma ic clea age o
hepa an sul a e sligh ly dec eased alkaline phospha ase ac i i y
(Fig. 8e).
To u he in es iga e a po en ial ECM a ge o MMP13 in
SMCs, we moni o ed he exp ession o ECM componen s in
hVSMCs, HUAECs, N-iPSC SMCs, and HGPS-iPSC SMCs. Ou
Fig. 4 MMP13 ac i i y in HGPS-iPSC SMCs cul u ed unde flow shea s ess. a Volcano plo ep esen ing di e en ially exp essed genes in HGPS-iPSC-
SMC cul u ed unde flow condi ions a day 0 and 4. Each poin ep esen s one o 53,617 genes. 26 and 31 genes we e up egula ed ( ed; old change ≥3;
p< 0.001) and down egula ed (yellow; old change ≤3; p< 0.001), espec i ely. G aph shows qRT-PCR alida ion o 16 genes wi h old changes >3. Fold
change was be ween days 0 and 4. Gene exp ession was no malized by he housekeeping gene GAPDH. Resul s a e mean ± SEM, n=4 echnical eplica es
om a pool o h ee independen expe imen s. S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . bSchema ic ep esen a ion o
he expe imen al p o ocol used. cE ec o HGPS-iPSC SMC o N-iPSC SMCs condi ioned media (in bo h cases ob ained a e 4 days unde flow
condi ions) on hVSMCs cul u ed unde flow condi ions. n=1–5 images examined o e h ee independen expe imen s. dQuan ifica ion o MMP13 ac i i y
(cell cul u e media) by ELISA. Cells we e analyzed a days 0 and 4 unde flow. Fluo escence signal was no malized by cell numbe . n=3 independen
expe imen s. S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . eE ec o MMP13 o BB94 inhibi ion in HGPS-iPSC SMC
de achmen . The numbe o cells was e alua ed a e 7 and 12 days unde a e ial flow and was no malized by he numbe o cells p esen a day 0. n=3–5
images examined o e h ee independen expe imen s. S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s pos es .
MMP13 knockdown by siRNA in HGPS-iPSC SMCs. MMP13 mRNA ansc ip s we e quan ified by qRT-PCR and no malized by GAPDH.Mean±SEM(n=4
echnical eplica es om a pool o h ee independen expe imen s). S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s
pos es . gNumbe o cells pe mic ofluidic a ea du ing cul u e unde flow shea condi ions no malized by he numbe o cells in con ol expe imen al
g oups (i.e., cells ans ec ed wi h con ol siRNA). n=7 independen expe imen s o day 7 and n=6 independen expe imen s o day 10. hPe cen age o
p oge in-posi i e cells a e 7 days unde flow condi ions wi h SmGM-2 media supplemen ed o no wi h MMP13 inhibi o . n=1–5 images examined o e
h ee independen expe imen s. S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . iAc i i y o alkaline phospha ase in HGPS-
iPSCs-SMC no malized by cell numbe pe mm2, in cells cul u ed 4 days unde flow condi ions. Cells we e ea ed o no wi h MMP13 inhibi o . n=3
independen expe imen s. In g aphs a–h, esul s a e mean ± SEM. *, **, ***, **** deno e s a is ical significance (p< 0.05, p< 0.01, p< 0.001, p< 0.0001).
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0
10
20
30
40
50
Concen a ion o MMP13
no malize by weigh
***
KiW
W W
p = 0.0001
d
W W KiW
e
a
KiH
α-SMA Nuclei
c
555
P oge in NucleiHS Nuclei
0
200
400
600
Hea a e (bpm)
W W
KiW
KiH
KiKO
**
*
b
0.0
0.5
1.0
1.5
2.0
2.5
In ensi y HS (a.u.)/cell numbe
(no malized by W W )
KiKO
g
0.0
0.5
1.0
1.5
2.0
2.5
α-SMA-posi i e cell nuclei/mm2
(no malized by W W )
*
*
**
p = 0.003
p = 0.0343
p = 0.0142
0
2
4
6
8
10
% P oge in posi i e cells
(no malized by W W )
****
*
*
**
**
Lmna+/+ = W W
LmnaG609G/G609G Mmp13+/+ = KiW
LmnaG609G/G609G Mmp13+/– = KiH
LmnaG609G/G609G Mmp13–/– = KiKo
Age: 10 weeks Hea a e
Immunohis ochemis y
Fig. 5 MMP13 inhibi ion significan ly inc eases SMC numbe in ao ic a ch o LmnaG609G/G609G mice. a Schema ic ep esen a ion o he animal p o ocol.
W W , KiW , KiH , and KiKo mice (age: 10 weeks) we e e alua ed. bQuan ifica ion o MMP13 ac i i y (plasma om W W , n=9, and KiW , n=6, mice)
by ELISA. Fluo escence signal was no malized by mice weigh . S a is ical analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . c
Immunofluo escence analyses in he ao ic a ch o α-SMA, p oge in, and hepa an sul a e (HS). Cell nuclei we e s ained wi h DAPI. Scale ba is 100 µm o
α-SMA s aining and 50 µm o p oge in and hepa an sul a e s aining. Fo α-SMA s aining, n=5 animals, excep o KiH ( ou animals). Fo p oge in
s aining, n=5 animals, excep o KiH ( h ee animals). Fo hepa an sul a e n=6 W W , n=6 KiW , n=4 KiH , and n=5 o KiKo. dHea a es in mice
(n=8 W W , n=6 KiW , n=7 KiH , and n=5 KiKo). S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s pos es .
eNumbe o SMC nuclei in ao ic a ch pe issue a ea (mm2)(n=2–3 slides examined o e fi e animals, excep o KiH ( ou animals)). S a is ical
analyses we e pe o med by a wo- ailed unpai ed S uden ’s es . Pe cen age o p oge in-posi i e cells in SMCs. n=5 animals, excep o KiH ( h ee
animals). S a is ical analyses we e pe o med by one-way ANOVA ollowed by Newman–Keuls’s pos es . gExp ession o hepa an sul a e as e alua ed by
immunofluo escence. In ensi y o hepa an sul a e was calcula ed in each pic u e (a leas 16 pic u es pe condi ion) and no malized by cell numbe mice
(n=6 W W , n=6 KiW , n=4, KiH and n=5 KiKo). In b,d–g, esul s a e mean ± SEM. *, **, ***, **** deno e s a is ical significance (p< 0.05, p< 0.01,
p< 0.001, p< 0.0001).
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