首页> 外文期刊>Journal of cardiovascular electrophysiology >Voltage-gated Na+ channel activity and connexin expression in Cx43-deficient cardiac myocytes.
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Voltage-gated Na+ channel activity and connexin expression in Cx43-deficient cardiac myocytes.

机译:Cx43缺陷型心肌细胞中的电压门控Na +通道活性和连接蛋白表达。

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INTRODUCTION: Dynamic interplay between active and passive electrical properties of cardiac myocytes is based on interrelationships between various channels responsible for depolarizing and repolarizing ionic currents and intercellular conductances. Mice with targeted disruption of the connexin43 (Cx43) gene have hearts completely devoid of Cx43, the principal gap junctional protein expressed in mammalian hearts. METHODS AND RESULTS: To determine whether cardiac myocytes that develop in an abnormal environment of reduced intercellular coupling have altered active membrane properties, we studied whole cell action potentials, Na+ channel currents, and Na+ channel expression and distribution via immunoblotting and confocal immunofluorescence in neonatal ventricular myocytes isolated from Cx43 wild-type, heterozygous, and homozygous null hearts. Action potential morphology, peak Na+ current, activation and inactivation kinetics, and Na+ channel protein expression and distribution were not different among myocytes isolated from wild-type, heterozygous, or null hearts. Active membrane properties and Na+ channel activity were completely normal in Cx43-deficient myocytes isolated from hearts that have been shown to exhibit markedly reduced Cx43 expression, gap junction number, and epicardial conduction delay. CONCLUSION: Despite a genetic inability to produce Cx43 and a developmental history that culminates in marked gross cardiac morphologic abnormalities, premature death, and myocardial inexcitability ex vivo, cardiac Na+ channel distribution and function appear to be normal in Cx43 null hearts. Although intimate structural and functional interrelationships have been described between ion channels and gap junction channels, expression and function of Na+ channels is not affected by the absence of Cx43.
机译:简介:心肌细胞主动和被动电特性之间的动态相互作用是基于负责使离子电流和细胞间电导去极化和复极化的各种通道之间的相互关系。有针对性地破坏连接蛋白43(Cx43)基因的小鼠的心脏完全没有Cx43,Cx43是在哺乳动物心脏中表达的主要间隙连接蛋白。方法和结果:为了确定在异常环境中细胞间偶联减少的环境中发育的心肌细胞是否改变了活性膜的特性,我们通过免疫印迹和共聚焦免疫荧光研究了新生儿心室的全细胞动作电位,Na +通道电流以及Na +通道的表达和分布。从Cx43野生型,杂合子和纯合子无效心脏分离的心肌细胞。从野生型,杂合子或空心脏分离的心肌细胞中,动作电位形态,Na +峰值电流,活化和失活动力学以及Na +通道蛋白的表达和分布没有差异。从心脏中分离出的Cx43缺陷型心肌细胞的活性膜特性和Na +通道活性是完全正常的,这些细胞已显示出Cx43的表达,间隙连接数和心外膜传导延迟明显降低。结论:尽管遗传上不能产生Cx43,并且其发展史最终导致明显的总体心脏形态异常,过早死亡和离体心肌兴奋性,但在Cx43无效心脏中,心脏Na +通道分布和功能似乎正常。尽管已经描述了离子通道和间隙连接通道之间紧密的结构和功能相互关系,但是Nax通道的表达和功能不受Cx43的存在的影响。

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