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连接蛋白40和43的共表达增强了间隙连接的pH敏感性:连接蛋白之间协同相互作用的模型。

Coexpression of connexins 40 and 43 enhances the pH sensitivity of gap junctions: a model for synergistic interactions among connexins.

作者信息

Gu H, Ek-Vitorin J F, Taffet S M, Delmar M

机构信息

Departments of Pharmacology and Microbiology and Immunology, SUNY Upstate Medical University, Syracuse, NY 13210, USA.

出版信息

Circ Res. 2000 May 26;86(10):E98-E103.

PMID:10827142
Abstract

Gap junctions are formed by oligomerization of a protein called connexin. Most cells express more than one connexin isotype. Atrial myocytes, for example, coexpress connexin (Cx) 40 and Cx43. The consequence of connexin coexpression on the regulation of gap junctions is not well understood. In the present study, we show that cells coexpressing Cx40 and Cx43 are more susceptible to acidification-induced uncoupling than those cells expressing only one connexin isotype. Xenopus oocytes were injected with mRNA for Cx40, Cx43, or a combination of both. Intracellular pH and junctional conductance were simultaneously measured while cells were progressively acidified by superfusion with a bicarbonate-buffered solution gassed with increasing concentrations of carbon dioxide. The data show that the pKa (ie, the pH at which junctional conductance decreased to 50% from maximum) shifted from approximately 6.7 when cells expressed only Cx40 or only Cx43 to approximately 7.0 when one of the oocytes was coexpressing both connexins. Truncation of the carboxyl terminal domains of the connexins caused the loss of pH sensitivity even after coexpression. The data are interpreted on the basis of previous studies from our laboratory that demonstrated heterodomain interactions in the regulation of Cx40 and Cx43 gap junctions. The possible implications of these findings on the regulation of native gap junctions that express both connexins remain to be determined.

摘要

间隙连接由一种名为连接蛋白的蛋白质寡聚化形成。大多数细胞表达不止一种连接蛋白亚型。例如,心房肌细胞共表达连接蛋白(Cx)40和Cx43。连接蛋白共表达对间隙连接调节的影响尚不清楚。在本研究中,我们发现共表达Cx40和Cx43的细胞比那些只表达一种连接蛋白亚型的细胞更容易受到酸化诱导的解偶联作用。将非洲爪蟾卵母细胞注射Cx40、Cx43的mRNA或两者的组合。在用逐渐增加二氧化碳浓度的碳酸氢盐缓冲溶液进行灌流使细胞逐渐酸化的同时,同步测量细胞内pH值和连接电导。数据显示,pKa(即连接电导从最大值降至50%时的pH值)从细胞仅表达Cx40或仅表达Cx43时的约6.7,转变为其中一个卵母细胞共表达两种连接蛋白时的约7.0。连接蛋白羧基末端结构域的截短即使在共表达后也导致pH敏感性丧失。这些数据是根据我们实验室之前的研究解释的,该研究证明了在Cx40和Cx43间隙连接调节中存在异源结构域相互作用。这些发现对表达两种连接蛋白的天然间隙连接调节的潜在影响仍有待确定。

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