Département de Pharmacologie et Physiologie, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, QC J1H 5N4, Canada; Département de Médecine - Service de Cardiologie, Centre de Recherche du CHUS, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.
Département de Médecine - Service de Rhumatologie, Centre de Recherche du CHUS, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.
Biochim Biophys Acta Mol Cell Res. 2019 Aug;1866(8):1249-1259. doi: 10.1016/j.bbamcr.2019.03.017. Epub 2019 Apr 2.
Intact store-operated calcium entry (SOCE) mechanisms ensure the maintenance of Ca homeostasis in cardiomyocytes while their dysregulation promotes the development of cardiomyopathies. To better understand this calcium handling process in cardiomyocytes, we sought to identify unknown protein partners of stromal interaction molecule 1 (STIM1), a main regulatory protein of SOCE. We identified the muscle-related coiled-coil protein (MURC), also known as Cavin-4, as a candidate and showed that MURC interacts with STIM1 in cardiomyocytes. This interaction occurs via the HR1 and ERM domains of MURC and STIM1, respectively. Our results also demonstrated that the overexpression of MURC in neonatal rat ventricular myocytes (NRVM) is sufficient to potentiate SOCE and that its HR1 domain is required to mediate this effect. Interestingly, the R140W-MURC mutant, a missense variant of the HR1 domain associated with human dilated cardiomyopathy, exacerbates the SOCE increase in NRVM. Although the endogenous expression of STIM1 and Ca channel Orai1 is not modulated under these conditions, we showed that MURC increases the interaction between these proteins under resting conditions. Our study provides novel evidence that MURC regulates SOCE by interacting with STIM1 in cardiomyocytes. In addition, we identified a first potential mechanism by which the R140W mutation of MURC may contribute to calcium mishandling and the development of cardiomyopathies.
完整的 store-operated 钙内流(SOCE)机制可确保心肌细胞中钙稳态的维持,而其失调则会促进心肌病的发展。为了更好地理解心肌细胞中的这种钙处理过程,我们试图鉴定基质相互作用分子 1(STIM1)的未知蛋白伴侣,STIM1 是 SOCE 的主要调节蛋白。我们鉴定出肌相关卷曲螺旋蛋白(MURC),也称为 Cavin-4,是一个候选蛋白,并表明 MURC 在心肌细胞中与 STIM1 相互作用。这种相互作用分别发生在 MURC 的 HR1 和 ERM 结构域以及 STIM1 上。我们的结果还表明,MURC 在新生大鼠心室肌细胞(NRVM)中的过表达足以增强 SOCE,并且其 HR1 结构域是介导这种效应所必需的。有趣的是,HR1 结构域的 R140W-MURC 突变体是与人类扩张型心肌病相关的错义变体,会加剧 NRVM 中的 SOCE 增加。尽管在这些条件下,内源性 STIM1 和钙通道 Orai1 的表达不受调节,但我们表明 MURC 在静息状态下增加了这些蛋白之间的相互作用。我们的研究提供了新的证据,表明 MURC 通过与心肌细胞中的 STIM1 相互作用来调节 SOCE。此外,我们确定了 MURC 的 R140W 突变可能导致钙处理异常和心肌病发展的第一个潜在机制。