Jeyaraman Maya M, Srisakuldee Wattamon, Nickel Barbara E, Kardami Elissavet
University of Manitoba, Canada.
Biochim Biophys Acta. 2012 Aug;1818(8):2009-13. doi: 10.1016/j.bbamem.2011.06.023. Epub 2011 Jul 3.
The fundamental role played by connexins including connexin43 (Cx43) in forming intercellular communication channels (gap junctions), ensuring electrical and metabolic coupling between cells, has long been recognized and extensively investigated. There is also increasing recognition that Cx43, and other connexins, have additional roles, such as the ability to regulate cell proliferation, migration, and cytoprotection. Multiple phosphorylation sites, targets of different signaling pathways, are present at the regulatory, C-terminal domain of Cx43, and contribute to constitutive as well as transient phosphorylation Cx43 patterns, responding to ever-changing environmental stimuli and corresponding cellular needs. The present paper will focus on Cx43 in the heart, and provide an overview of the emerging recognition of a relationship between Cx43, its phosphorylation pattern, and development of resistance to injury. We will also review our recent work regarding the role of an enhanced phosphorylation state of Cx43 in cardioprotection. This article is part of a Special Issue entitled: The Communicating junctions, composition, structure and characteristics.
包括连接蛋白43(Cx43)在内的连接蛋白在形成细胞间通讯通道(间隙连接)、确保细胞间电耦合和代谢耦合方面所起的基本作用,早已得到认可并被广泛研究。人们也越来越认识到,Cx43和其他连接蛋白还有其他作用,比如调节细胞增殖、迁移和细胞保护的能力。Cx43的调节性C末端结构域存在多个磷酸化位点,这些位点是不同信号通路的靶点,有助于形成组成性以及瞬时性的Cx43磷酸化模式,以响应不断变化的环境刺激和相应的细胞需求。本文将聚焦于心脏中的Cx43,并概述对Cx43及其磷酸化模式与抗损伤能力发展之间关系的新认识。我们还将回顾我们最近关于Cx43增强磷酸化状态在心脏保护中的作用的研究工作。本文是名为《通讯连接、组成、结构和特性》的特刊的一部分。