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二氢吡啶受体与雷诺丁受体之间的双向偶联

Bi-directional coupling between dihydropyridine receptors and ryanodine receptors.

作者信息

Dirksen Robert T

机构信息

University of Rochester School of Medicine and Dentistry, Rochester, NY 14534, USA.

出版信息

Front Biosci. 2002 Mar 1;7:d659-70. doi: 10.2741/A802.

Abstract

The control of calcium signaling between plasma membrane dihydropyridine receptors (DHPRs or L-type calcium channels) and ryanodine receptors (RyRs or calcium release channels) located in the endoplasmic/sarcoplasmic reticulum (ER/SR) underlies a broad array of functions including skeletal muscle contraction, cardiac performance, arteriole tone, neurosecretion, synaptic plasticity, and gene regulation. It has long been appreciated that DHPR activation of RyRs and subsequent calcium release from intracellular stores represents a key event in the control of these processes. In excitable cells, DHPRs trigger the release of intracellular calcium by promoting the opening of nearby RyRs (termed orthograde coupling). Interestingly, the signaling interaction between DHPRs and RyRs is often bi-directional such that the calcium-conducting activity of DHPR channels is also regulated by its interaction with the RyR (termed retrograde coupling). Recent data indicate that skeletal, cardiac, and neuronal cells utilize fundamentally distinct DHPR/RyR bi-directional coupling mechanisms (chemical and mechanical) in order to control the efficiency, fidelity, and activity of each of these two essential calcium channels. This review will focus on evaluating the nature and molecular determinants of these coupling mechanisms, as well as the extent to which excitable cell function is influenced by bi-directional DHPR/RyR calcium signaling.

摘要

质膜二氢吡啶受体(DHPRs或L型钙通道)与位于内质网/肌浆网(ER/SR)的兰尼碱受体(RyRs或钙释放通道)之间钙信号的控制,是包括骨骼肌收缩、心脏功能、小动脉张力、神经分泌、突触可塑性和基因调控在内的一系列广泛功能的基础。长期以来,人们一直认识到RyRs的DHPR激活以及随后从细胞内储存库释放钙是控制这些过程的关键事件。在可兴奋细胞中,DHPRs通过促进附近RyRs的开放来触发细胞内钙的释放(称为顺向偶联)。有趣的是,DHPRs与RyRs之间的信号相互作用通常是双向的,以至于DHPR通道的钙传导活性也受其与RyR相互作用的调节(称为逆向偶联)。最近的数据表明,骨骼肌、心脏和神经元细胞利用根本不同的DHPR/RyR双向偶联机制(化学和机械)来控制这两个基本钙通道各自的效率、保真度和活性。本综述将着重评估这些偶联机制的性质和分子决定因素,以及双向DHPR/RyR钙信号对可兴奋细胞功能的影响程度。

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