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连接蛋白的化学门控是否对电压敏感?Cx32野生型和突变型通道的行为。

Is the chemical gate of connexins voltage sensitive? Behavior of Cx32 wild-type and mutant channels.

作者信息

Peracchia C, Wang X G, Peracchia L L

机构信息

Department of Pharmacology and Physiology, School of Medicine and Dentistry, University of Rochester, Rochester, New York 14642-8711, USA.

出版信息

Am J Physiol. 1999 Jun;276(6):C1361-73. doi: 10.1152/ajpcell.1999.276.6.C1361.

Abstract

Connexin channels are gated by transjunctional voltage (Vj) or CO2 via distinct mechanisms. The cytoplasmic loop (CL) and arginines of a COOH-terminal domain (CT1) of connexin32 (Cx32) were shown to determine CO2 sensitivity, and a gating mechanism involving CL-CT1 association-dissociation was proposed. This study reports that Cx32 mutants, tandem, 5R/E, and 5R/N, designed to weaken CL-CT1 interactions, display atypical Vj and CO2 sensitivities when tested heterotypically with Cx32 wild-type channels in Xenopus oocytes. In tandems, two Cx32 monomers are linked NH2-to-COOH terminus. In 5R/E and 5R/N mutants, glutamates or asparagines replace CT1 arginines. On the basis of the intriguing sensitivity of the mutant-32 channel to Vj polarity, the existence of a "slow gate" distinct from the conventional Vj gate is proposed. To a lesser extent the slow gate manifests itself also in homotypic Cx32 channels. Mutant-32 channels are more CO2 sensitive than homotypic Cx32 channels, and CO2-induced chemical gating is reversed with relative depolarization of the mutant oocyte, suggesting Vj sensitivity of chemical gating. A hypothetical pore-plugging model involving an acidic cytosolic protein (possibly calmodulin) is discussed.

摘要

连接蛋白通道通过不同机制由跨连接电压(Vj)或二氧化碳门控。连接蛋白32(Cx32)的胞质环(CL)和COOH末端结构域(CT1)的精氨酸被证明决定了对二氧化碳的敏感性,并提出了一种涉及CL-CT1缔合-解离的门控机制。本研究报告称,旨在削弱CL-CT1相互作用而设计的Cx32突变体串联体、5R/E和5R/N,在非洲爪蟾卵母细胞中与Cx32野生型通道进行异型测试时,表现出非典型的Vj和二氧化碳敏感性。在串联体中,两个Cx32单体从NH2端到COOH端相连。在5R/E和5R/N突变体中,谷氨酸或天冬酰胺取代了CT1的精氨酸。基于突变型32通道对Vj极性的有趣敏感性,提出了一种不同于传统Vj门控的“慢门控”的存在。慢门控在较小程度上也在同型Cx32通道中表现出来。突变型32通道比同型Cx32通道对二氧化碳更敏感,并且二氧化碳诱导的化学门控随着突变型卵母细胞的相对去极化而逆转,表明化学门控对Vj敏感。讨论了一种涉及酸性胞质蛋白(可能是钙调蛋白)的假设性孔堵塞模型。

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