Department of Internal Medicine III, University of Cologne, Cologne, Germany.
J Clin Invest. 2010 May;120(5):1441-53. doi: 10.1172/JCI40927. Epub 2010 Apr 1.
Potassium (K+) channels in the inner mitochondrial membrane influence cell function and survival. Increasing evidence indicates that multiple signaling pathways and pharmacological actions converge on mitochondrial ATP-sensitive K+ (mitoKATP) channels and PKC to confer cytoprotection against necrotic and apoptotic cell injury. However, the molecular structure of mitoKATP channels remains unresolved, and the mitochondrial phosphoprotein(s) that mediate cytoprotection by PKC remain to be determined. As mice deficient in the main sarcolemmal gap junction protein connexin 43 (Cx43) lack this cytoprotection, we set out to investigate a possible link among mitochondrial Cx43, mitoKATP channel function, and PKC activation. By patch-clamping the inner membrane of subsarcolemmal murine cardiac mitochondria, we found that genetic Cx43 deficiency, pharmacological connexin inhibition by carbenoxolone, and Cx43 blockade by the mimetic peptide 43GAP27 each substantially reduced diazoxide-mediated stimulation of mitoKATP channels. Suppression of mitochondrial Cx43 inhibited mitoKATP channel activation by PKC. MitoKATP channels of interfibrillar mitochondria, which do not contain any detectable Cx43, were insensitive to both PKC activation and diazoxide, further demonstrating the role of Cx43 in mitoKATP channel stimulation and the compartmentation of mitochondria in cell signaling. Our results define a role for mitochondrial Cx43 in protecting cardiac cells from death and provide a link between cytoprotective stimuli and mitoKATP channel opening, making Cx43 an attractive therapeutic target for protection against cell injury.
线粒体内膜上的钾 (K+) 通道影响细胞功能和存活。越来越多的证据表明,多种信号通路和药理作用都集中在 ATP 敏感性线粒体钾 (mitoKATP) 通道和蛋白激酶 C (PKC) 上,以提供针对坏死和凋亡细胞损伤的细胞保护作用。然而,mitoKATP 通道的分子结构仍未解决,PKC 介导细胞保护作用的线粒体磷酸蛋白 (s) 仍有待确定。由于主要的肌质侧间隙连接蛋白 connexin 43 (Cx43) 缺失的小鼠缺乏这种细胞保护作用,我们着手研究线粒体 Cx43、mitoKATP 通道功能和 PKC 激活之间可能存在的联系。通过对亚肌质区心肌线粒体的内膜进行膜片钳记录,我们发现基因 Cx43 缺失、药理学间隙连接抑制剂 carbenoxolone 以及模拟肽 43GAP27 对 Cx43 的阻断都显著降低了 diazoxide 对 mitoKATP 通道的刺激作用。线粒体 Cx43 的抑制作用抑制了 PKC 对 mitoKATP 通道的激活。不含任何可检测到的 Cx43 的纤维间线粒体的 mitoKATP 通道对 PKC 激活和 diazoxide 均不敏感,进一步证明了 Cx43 在 mitoKATP 通道刺激和线粒体在细胞信号中的分隔中的作用。我们的研究结果确定了线粒体 Cx43 在保护心脏细胞免受死亡方面的作用,并为细胞保护刺激与 mitoKATP 通道开放之间提供了联系,使 Cx43 成为保护细胞免受损伤的有吸引力的治疗靶点。