TRPV4 deletion protects heart from myocardial infarction-induced adverse remodeling via modulation of cardiac fibroblast differentiation

被引:0
作者
Ravi K. Adapala
Anantha K. Kanugula
Sailaja Paruchuri
William M. Chilian
Charles K. Thodeti
机构
[1] Northeast Ohio Medical University,Department of Integrative Medical Sciences
[2] Kent State University,School of Biomedical Sciences
[3] University of Akron,Department of Chemistry
来源
Basic Research in Cardiology | 2020年 / 115卷
关键词
Cardiac fibroblast; Cardiac fibrosis; Mechanotransduction; Myocardial infarction; Rho/Rho kinase; TGF-β1; TRPV4;
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摘要
Cardiac fibrosis caused by adverse cardiac remodeling following myocardial infarction can eventually lead to heart failure. Although the role of soluble factors such as TGF-β is well studied in cardiac fibrosis following myocardial injury, the physiological role of mechanotransduction is not fully understood. Here, we investigated the molecular mechanism and functional role of TRPV4 mechanotransduction in cardiac fibrosis. TRPV4KO mice, 8 weeks following myocardial infarction (MI), exhibited preserved cardiac function compared to WT mice. Histological analysis demonstrated reduced cardiac fibrosis in TRPV4KO mice. We found that WT CF exhibited hypotonicity-induced calcium influx and extracellular matrix (ECM)-stiffness-dependent differentiation in response to TGF-β1. In contrast, TRPV4KO CF did not display hypotonicity-induced calcium influx and failed to differentiate on high-stiffness ECM gels even in the presence of saturating amounts of TGF-β1. Mechanistically, TRPV4 mediated cardiac fibrotic gene promoter activity and fibroblast differentiation through the activation of the Rho/Rho kinase pathway and the mechanosensitive transcription factor MRTF-A. Our findings suggest that genetic deletion of TRPV4 channels protects heart from adverse cardiac remodeling following MI by modulating Rho/MRTF-A pathway-mediated cardiac fibroblast differentiation and cardiac fibrosis.
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  • [31] Sinharoy P(2018)Novel noncanonical regulation of soluble VEGF/VEGFR2 signaling by mechanosensitive ion channel TRPV4 Basic Res Cardiol 113 42-535
  • [32] Dey S(2006)What mechanisms underlie diastolic dysfunction in heart failure? Arterioscler Thromb Vasc Biol 26 1495-60
  • [33] Bratz IN(2014)Raf kinase inhibitor protein mediates myocardial fibrosis under conditions of enhanced myocardial oxidative stress Cell Mol Life Sci 71 549-856
  • [34] Damron DS(2013)Evidence for a functional role of endothelial transient receptor potential V4 in shear stress-induced vasodilatation J Cell Mol Med 17 704-458
  • [35] Bell RM(2005)The pathogenesis of cardiac fibrosis Mol Cell Biol 25 3173-2849
  • [36] Botker HE(2010)Mechanotransduction at focal adhesions: integrating cytoskeletal mechanics in migrating cells Circ Res 106 1675-E6259
  • [37] Carr RD(2019)Muscle-specific signaling mechanism that links actin dynamics to serum response factor Nat Commun 10 529-770
  • [38] Davidson SM(2000)Potential therapeutic targets for cardiac fibrosis: TGFbeta, angiotensin, endothelin, CCN2, and PDGF, partners in fibroblast activation Cell 103 525-442
  • [39] Downey JM(2016)Volume expansion and TRPV4 activation regulate stem cell fate in three-dimensional microenvironments J Mol Cell Cardiol 91 52-H476
  • [40] Dutka DP(2012)Vanilloid receptor-related osmotically activated channel (VR-OAC), a candidate vertebrate osmoreceptor Circ Res 110 851-482