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连接蛋白 40 和连接蛋白 43 决定了心房缝隙连接通道的门控特性。

Connexin40 and connexin43 determine gating properties of atrial gap junction channels.

机构信息

Department of Pharmacology, SUNY Upstate Medical University, 750 East Adams Street, Syracuse, NY 13210, USA.

出版信息

J Mol Cell Cardiol. 2010 Jan;48(1):238-45. doi: 10.1016/j.yjmcc.2009.05.014. Epub 2009 May 30.

Abstract

While ventricular gap junctions contain only Cx43, atrial gap junctions contain both Cx40 and Cx43; yet the functional consequences of this co-expression remain poorly understood. We quantitated the expression of Cx40 and Cx43 and their contributions to atrial gap junctional conductance (g(j)). Neonatal murine atrial myocytes showed similar abundances of Cx40 and Cx43 proteins, while ventricular myocytes contained at least 20 times more Cx43 than Cx40. Since Cx40 gap junction channels are blocked by 2 mM spermine while Cx43 channels are unaffected, we used spermine block as a functional dual whole cell patch clamp assay to determine Cx40 contributions to cardiac g(j). Slightly more than half of atrial g(j) and <or=20% of ventricular g(j) were inhibited. In myocytes from Cx40 null mice, the inhibition of ventricular g(j) was completely abolished, and the block of atrial g(j) was reduced to <20%. Compared to ventricular gap junctions, the transjunctional voltage (V(j))-dependent inactivation of atrial g(j) was reduced and kinetically slowed, while the V(j)-dependence of fast and slow inactivation was unchanged. We conclude that Cx40 and Cx43 are equally abundant in atrium and make similar contributions to atrial g(j). Co-expression of Cx40 accounts for most, but not all, of the differences in the V(j)-dependent gating properties between atrium and ventricle that may play a role in the genesis of slow myocardial conduction and arrhythmias.

摘要

虽然心室缝隙连接仅包含 Cx43,但心房缝隙连接同时包含 Cx40 和 Cx43;然而,这种共表达的功能后果仍知之甚少。我们定量了 Cx40 和 Cx43 的表达及其对心房缝隙连接电导(g(j))的贡献。新生鼠心房肌细胞显示出相似的 Cx40 和 Cx43 蛋白丰度,而心室肌细胞中 Cx43 的含量至少是 Cx40 的 20 倍。由于 Cx40 缝隙连接通道被 2mM 精胺阻断,而 Cx43 通道不受影响,因此我们使用精胺阻断作为功能性双全细胞膜片钳检测来确定 Cx40 对心脏 g(j)的贡献。心房 g(j)的略多于一半和心室 g(j)的 <或=20%被抑制。在 Cx40 缺失小鼠的心肌细胞中,心室 g(j)的抑制完全消除,而心房 g(j)的阻断减少到 <20%。与心室缝隙连接相比,心房 g(j)的跨连接电压(V(j))依赖性失活减少且动力学减慢,而快速和慢速失活的 V(j)依赖性不变。我们得出结论,Cx40 和 Cx43 在心房中含量相等,对心房 g(j)的贡献相似。Cx40 的共表达解释了心房和心室之间 V(j)依赖性门控特性差异的大部分(但不是全部),这可能在缓慢心肌传导和心律失常的发生中起作用。

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