4.5 Article

Cardiomyocyte specific overexpression of a 37 amino acid domain of regulator of G protein signalling 2 inhibits cardiac hypertrophy and improves function in response to pressure overload in mice

期刊

JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY
卷 108, 期 -, 页码 194-202

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.yjmcc.2017.06.007

关键词

RGS2(eb); RGS2; Cardiac hypertrophy; Protein synthesis; Cardiac hypertrophy

资金

  1. Heart and Stroke Foundation of Ontario [R2838A15, 7484]
  2. Canadian Institutes of Health Research [R2838A14]
  3. Career Investigator Awards from the Heart and Stroke Foundation of Ontario
  4. Ontario Graduate Scholarship

向作者/读者索取更多资源

Regulator of G protein signalling 2 (RGS2) is known to play a protective role in maladaptive cardiac hypertrophy and heart failure via its ability to inhibit G(q)- and G(s)-mediated GPCR signalling. We previously demonstrated that RGS2 can also inhibit protein translation and can thereby attenuate cell growth. This G protein-independent inhibitory effect has been mapped to a 37 amino acid domain (RGS2(eb)) within RGS2 that binds to eukaryotic initiation factor 2B (eIF2B). When expressed in neonatal rat cardiomyocytes, RGS2(eb) attenuates both protein synthesis and hypertrophy induced by G(q)- and G(s)-activating agents. In the current study, we investigated the potential cardioprotective role of RGS2(eb) by determining whether RGS2(eb) transgenic (RGS2(eb) TG) mice with cardiomyocyte specific overexpression of RGS2(eb) show resistance to the development of hypertrophy in comparison to wild-type (WT) controls. Using transverse aortic constriction (TAC) in a pressure-overload hypertrophy model, we demonstrated that cardiac hypertrophy was inhibited in RGS2(eb) TG mice compared to WT controls following four weeks of TAC. Expression of the hypertrophic markers atrial natriuretic peptide (ANP) and beta-myosin heavy chain (MHC-beta) was also reduced in RGS2(eb) TG compared to WT TAC animals. Furthermore, cardiac function in RGS2(eb) TG TAC mice was significantly improved compared to WT TAC mice. Notably, cardiomyocyte cell size was significantly decreased in TG compared to WT TAC mice. These results suggest that RGS2 may limit pathological cardiac hypertrophy at least in part via the function of its eIF2B-binding domain. (C) 2017 The Authors. Published by Elsevier Ltd.

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