Department of Cancer Prevention, Institute for Cancer Research, the Norwegian Radium Hospital, Oslo University Hospital, University of Oslo, Oslo, Norway.
Cell Signal. 2010 Sep;22(9):1267-73. doi: 10.1016/j.cellsig.2010.03.005. Epub 2010 Mar 4.
Intercellular communication via gap junctions plays a critical role in numerous cellular processes, including the control of cell growth and differentiation, maintenance of tissue homeostasis and embryonic development. Gap junctions are aggregates of intercellular channels that enable adjacent cells in solid tissues to directly exchange ions and small molecules. These channels are formed by a family of integral membrane proteins called connexins, of which the best studied is connexin43. Connexins have a high turnover rate in most tissue types, and degradation of connexins is considered to be a tightly regulated process. Post-translational modification of connexins by ubiquitin is emerging as an important event in the regulation of connexin degradation. Ubiquitination is involved in endoplasmic reticulum-associated degradation of connexins as well as in trafficking of connexins to lysosomes. At both the endoplasmic reticulum and the plasma membrane, ubiquitination of connexins is strongly affected by changes in the extracellular environment. There is increasing evidence that the regulation of connexin ubiquitination might be an important mechanism for rapidly modifying the level of functional gap junctions at the plasma membrane, under both normal and pathological conditions. This review discusses the current knowledge about the regulation of intercellular communication via gap junctions by ubiquitination of connexins.
细胞间通过缝隙连接进行通讯对于许多细胞过程至关重要,包括控制细胞生长和分化、维持组织内稳态和胚胎发育。缝隙连接是细胞间通道的聚集体,使固体组织中的相邻细胞能够直接交换离子和小分子。这些通道由一组称为连接蛋白的整合膜蛋白形成,其中研究最深入的是连接蛋白 43。在大多数组织类型中,连接蛋白的周转率很高,并且连接蛋白的降解被认为是一个受到严格调控的过程。通过泛素对连接蛋白的翻译后修饰正在成为连接蛋白降解调控的一个重要事件。泛素化参与连接蛋白的内质网相关降解以及连接蛋白向溶酶体的运输。在内质网和质膜上,连接蛋白的泛素化都受到细胞外环境变化的强烈影响。越来越多的证据表明,连接蛋白泛素化的调节可能是在正常和病理条件下快速调节质膜上功能性缝隙连接水平的重要机制。本文综述了泛素化连接蛋白对细胞间通讯的调节作用的最新知识。