Basheer Wassim A, Harris Brett S, Mentrup Heather L, Abreha Measho, Thames Elizabeth L, Lea Jessica B, Swing Deborah A, Copeland Neal G, Jenkins Nancy A, Price Robert L, Matesic Lydia E
Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA.
Department of Regenerative Medicine and Cell Biology, Medical University of South Carolina, Charleston, SC 29425, USA.
J Mol Cell Cardiol. 2015 Nov;88:1-13. doi: 10.1016/j.yjmcc.2015.09.004. Epub 2015 Sep 16.
Gap junctions (GJ) are intercellular channels composed of connexin subunits that play a critical role in a diverse number of cellular processes in all tissue types. In the heart, GJs mediate electrical coupling between cardiomyocytes and display mislocalization and/or downregulation in cardiac disease (a process known as GJ remodeling), producing an arrhythmogenic substrate. The main constituent of GJs in the ventricular myocardium is Connexin 43 (Cx43), an integral membrane protein that is rapidly turned over and shows decreased expression or function with age. We hypothesized that Wwp1, an ubiquitin ligase whose expression in known to increase in aging-related pathologies, may regulate Cx43 in vivo by targeting it for ubiquitylation and degradation and yield tissue-specific Cx43 loss of function phenotypes. When Wwp1 was globally overexpressed in mice under the control of a β-actin promoter, the highest induction of Wwp1 expression was observed in the heart which was associated with a 90% reduction in cardiac Cx43 protein levels, left ventricular hypertrophy (LVH), and the development of lethal ventricular arrhythmias around 8weeks of age. This phenotype was completely penetrant in two independent founder lines. Cardiomyocyte-specific overexpression of Wwp1 confirmed that this phenotype was cell autonomous and delineated Cx43-dependent and -independent roles for Wwp1 in arrhythmogenesis and LVH, respectively. Using a cell-based system, it was determined that Wwp1 co-immunoprecipitates with and ubiquitylates Cx43, causing a decrease in the steady state levels of Cx43 protein. These findings offer new mechanistic insights into the regulation of Cx43 which may be exploitable in various gap junctionopathies.
缝隙连接(GJ)是由连接蛋白亚基组成的细胞间通道,在所有组织类型的多种细胞过程中发挥关键作用。在心脏中,缝隙连接介导心肌细胞之间的电偶联,并在心脏疾病中出现定位错误和/或下调(这一过程称为缝隙连接重塑),从而产生致心律失常的底物。心室心肌中缝隙连接的主要成分是连接蛋白43(Cx43),它是一种整合膜蛋白,更新迅速,且随着年龄增长其表达或功能会降低。我们推测,泛素连接酶Wwp1在与衰老相关的病理过程中表达会增加,它可能通过靶向Cx43进行泛素化和降解来在体内调节Cx43,并产生组织特异性的Cx43功能丧失表型。当在β-肌动蛋白启动子的控制下在小鼠中整体过表达Wwp1时,在心脏中观察到Wwp1表达的最高诱导,这与心脏Cx43蛋白水平降低90%、左心室肥厚(LVH)以及约8周龄时致命性室性心律失常的发生有关。这种表型在两个独立的创始系中完全显现。Wwp1在心肌细胞特异性过表达证实了这种表型是细胞自主性的,并分别阐明了Wwp1在心律失常发生和左心室肥厚中依赖Cx43和不依赖Cx43的作用。使用基于细胞的系统确定,Wwp1与Cx43共免疫沉淀并使其泛素化,导致Cx43蛋白的稳态水平降低。这些发现为Cx43的调节提供了新的机制见解,这可能在各种缝隙连接病中得到应用。