Second Dept. of Internal Medicine, Sapporo Medical Univ., Japan.
Am J Physiol Heart Circ Physiol. 2010 Apr;298(4):H1115-25. doi: 10.1152/ajpheart.00879.2009. Epub 2010 Jan 29.
The gap junction plays roles not only in electrical coupling of cardiomyocytes but also in intercellular transport of biologically active substances. Furthermore, the gap junction participates in decision making on cell survival versus cell death in various types of cells, and a part of reperfusion injury in the heart has been indicated to be gap junction mediated. The contribution of gap junction communication (GJC) and/or mitochondrial "hemichannels" to protective signaling during the trigger phase of ischemic preconditioning (IPC) is suggested by observations that IPC failed to protect the heart when GJC was blocked during IPC. Although ischemia suppresses both electrical and chemical GJC, chemical GJC persists for a considerable time after electrical GJC is lost. IPC facilitates the ischemia-induced suppression of chemical GJC, whereas IPC delays the reduction of electrical GJC after ischemia. The inhibition of GJC during sustained ischemia and reperfusion by GJC blockers mimics the effect of IPC on myocardial necrosis. IPC induces distinct effects on the interaction of connexin-43 with protein kinases, and the phosphorylation of connexin-43 at Ser368 by PKCepsilon is a primary mechanism of inhibition of chemical GJC by IPC. Several lines of evidence support the notion that the modulation of GJC is a part of the mechanism of IPC-induced protection against myocardial necrosis and arrhythmias, though what percentage of IPC protection is attributable to the inhibition of GJC during ischemia-reperfusion still remains unclear.
缝隙连接不仅在心肌细胞的电偶联中起作用,而且在生物活性物质的细胞间转运中也起作用。此外,缝隙连接参与各种类型细胞中关于细胞存活与死亡的决策,并且心脏的再灌注损伤的一部分已被表明是缝隙连接介导的。观察到在缺血预处理 (IPC) 的触发阶段,缝隙连接通讯 (GJC) 和/或线粒体“半通道”对保护信号的贡献,提示 GJC 在 IPC 期间被阻断时,IPC 未能保护心脏。尽管缺血抑制了电和化学 GJC,但在电 GJC 丧失后,化学 GJC 仍持续相当长的时间。IPC 促进缺血诱导的化学 GJC 抑制,而 IPC 延迟缺血后电 GJC 的减少。GJC 阻断剂在持续缺血和再灌注期间对 GJC 的抑制模拟了 IPC 对心肌坏死的作用。IPC 对连接蛋白-43 与蛋白激酶的相互作用产生独特的影响,PKCepsilon 对连接蛋白-43 的 Ser368 磷酸化是 IPC 抑制化学 GJC 的主要机制。有几条证据支持这样一种观点,即 GJC 的调节是 IPC 诱导的心肌坏死和心律失常保护机制的一部分,尽管在缺血再灌注期间抑制 GJC 对 IPC 保护的百分比仍不清楚。