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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Different subcellular populations of L-type Ca 2+ channels exhibit unique regulation and functional roles in cardiomyocytes
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Different subcellular populations of L-type Ca 2+ channels exhibit unique regulation and functional roles in cardiomyocytes

机译:L型Ca 2+通道的不同亚细胞群体在心肌细胞中表现出独特的调节和功能作用

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Influx of Ca 2+ through L-type Ca 2+ channels (LTCCs) contributes to numerous cellular processes in cardiomyocytes including excitation-contraction (EC) coupling, membrane excitability, and transcriptional regulation. Distinct subpopulations of LTCCs have been identified in cardiac myocytes, including those at dyadic junctions and within different plasma membrane microdomains such as lipid rafts and caveolae. These subpopulations of LTCCs exhibit regionally distinct functional properties and regulation, affording precise spatiotemporal modulation of L-type Ca 2+ current (I Ca,L). Different subcellular LTCC populations demonstrate variable rates of Ca 2+-dependent inactivation and sometimes coupled gating of neighboring channels, which can lead to focal, persistent I Ca,L. In addition, the assembly of spatially defined macromolecular signaling complexes permits compartmentalized regulation of I Ca,L by a variety of neurohormonal pathways. For example, β-adrenergic receptor subtypes signal to different LTCC subpopulations, with β 2-adrenergic activation leading to enhanced I Ca,L through caveolar LTCCs and β 1-adrenergic stimulation modulating LTCCs outside of caveolae. Disruptions in the normal subcellular targeting of LTCCs and associated signaling proteins may contribute to the pathophysiology of a variety of cardiac diseases including heart failure and certain arrhythmias. Further identifying the characteristic functional properties and array of regulatory molecules associated with specific LTCC subpopulations will provide a mechanistic framework to understand how LTCCs contribute to diverse cellular processes in normal and diseased myocardium. This article is part of a Special Issue entitled "Local Signaling in Myocytes".
机译:通过L型Ca 2+通道(LTCC)流入Ca 2+有助于心肌细胞中的众多细胞过程,包括兴奋收缩(EC)耦合,膜兴奋性和转录调控。 LTCCs的不同亚群已在心肌细胞中鉴定出来,包括在二元交界处和不同质膜微域(如脂质筏和小窝)中的那些。 LTCC的这些亚群表现出区域不同的功能特性和调节,从而提供L型Ca 2+电流(I Ca,L)的精确时空调制。不同的亚细胞LTCC群体表现出不同的Ca 2+依赖性失活速率,并且有时耦合相邻通道的门控,这可能导致局灶性,持续性I Ca,L。另外,空间定义的大分子信号复合物的组装允许通过多种神经激素途径对I Ca,L进行分区调节。例如,β-肾上腺素受体亚型向不同的LTCC亚群发出信号,其中β2-肾上腺素激活通过海绵体LTCC和β1-肾上腺素刺激调节小窝外部的LTCC导致I Ca,L增强。 LTCCs和相关信号蛋白的正常亚细胞靶向的破坏可能有助于多种心脏疾病的病理生理,包括心力衰竭和某些心律不齐。进一步鉴定与特定LTCC亚群相关的特征性功能特性和调控分子阵列将提供一个机制框架,以了解LTCC如何促进正常和患病心肌的各种细胞过程。本文是名为“肌细胞中的局部信号传导”的特刊的一部分。

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