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连接蛋白40和43形成异型间隙连接通道的功能

Functional formation of heterotypic gap junction channels by connexins-40 and -43.

作者信息

Lin Xianming, Xu Qin, Veenstra Richard D

机构信息

a Department of Pharmacology ; SUNY Upstate Medical University ; Syracuse , NY USA.

出版信息

Channels (Austin). 2014;8(5):433-43. doi: 10.4161/19336950.2014.949188.

Abstract

Connexin40 (Cx40) and connexin43 (Cx43) are co-expressed in the cardiovascular system, yet their ability to form functional heterotypic Cx43/Cx40 gap junctions remains controversial. We paired Cx43 or Cx40 stably-transfected N2a cells to examine the formation and biophysical properties of heterotypic Cx43/Cx40 gap junction channels. Dual whole cell patch clamp recordings demonstrated that Cx43 and Cx40 form functional heterotypic gap junctions with asymmetric transjunctional voltage (Vj) dependent gating properties. The heterotypic Cx43/Cx40 gap junctions exhibited less Vj gating when the Cx40 cell was positive and pronounced gating when negative. Endogenous N2a cell connexin expression levels were 1,000-fold lower than exogenously expressed Cx40 and Cx43 levels, measured by real-time PCR and Western blotting methods, suggestive of heterotypic gap junction formation by exogenous Cx40 and Cx43. Imposing a [KCl] gradient across the heterotypic gap junction modestly diminished the asymmetry of the macroscopic normalized junctional conductance - voltage (Gj-Vj) curve when [KCl] was reduced by 50% on the Cx43 side and greatly exacerbated the Vj gating asymmetries when lowered on the Cx40 side. Pairing wild-type (wt) Cx43 with the Cx40 E9,13K mutant protein produced a nearly symmetrical heterotypic Gj-Vj curve. These studies conclusively demonstrate the ability of Cx40 and Cx43 to form rectifying heterotypic gap junctions, owing primarily to alternate amino-terminal (NT) domain acidic and basic amino acid differences that may play a significant role in the physiology and/or pathology of the cardiovascular tissues including cardiac conduction properties and myoendothelial intercellular communication.

摘要

连接蛋白40(Cx40)和连接蛋白43(Cx43)在心血管系统中共同表达,但其形成功能性异型Cx43/Cx40间隙连接的能力仍存在争议。我们将稳定转染Cx43或Cx40的N2a细胞配对,以研究异型Cx43/Cx40间隙连接通道的形成和生物物理特性。双全细胞膜片钳记录表明,Cx43和Cx40形成具有不对称跨连接电压(Vj)依赖性门控特性的功能性异型间隙连接。当Cx40细胞为正时,异型Cx43/Cx40间隙连接表现出较少的Vj门控,而当为负时则表现出明显的门控。通过实时PCR和蛋白质印迹法测量,内源性N2a细胞连接蛋白表达水平比外源性表达的Cx40和Cx43水平低1000倍,提示外源性Cx40和Cx43形成了异型间隙连接。当在Cx43侧将[KCl]降低50%时,在异型间隙连接上施加[KCl]梯度适度减小了宏观标准化连接电导-电压(Gj-Vj)曲线的不对称性,而当在Cx40侧降低时则大大加剧了Vj门控不对称性。将野生型(wt)Cx43与Cx40 E9,13K突变蛋白配对产生了几乎对称的异型Gj-Vj曲线。这些研究最终证明了Cx40和Cx43形成整流异型间隙连接的能力,这主要归因于交替的氨基末端(NT)结构域酸性和碱性氨基酸差异,这些差异可能在心血管组织的生理和/或病理过程中发挥重要作用,包括心脏传导特性和肌内皮细胞间通讯。

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