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骨骼肌和心肌中兰尼碱受体(RyR)与二氢吡啶受体(dHPR)关系的功能意义

Functional implications of RyR-dHPR relationships in skeletal and cardiac muscles.

作者信息

Franzini-Armstrong Clara

机构信息

Dept. Cell Developmental Biology, University of Pennsylvania School of Medicine, Anatomy/Chemistry, Building B42, Philadelphia, PA 19104-6058, USA.

出版信息

Biol Res. 2004;37(4):507-12. doi: 10.4067/s0716-97602004000400003.

Abstract

Dihydropyridine receptors (DHPRs) and ryanodine receptors (RyRs) interact during EC coupling within calcium release units, CRUs. The location of the two channels and their positioning are related to their role in EC coupling. alphals DHPR and RyR1 of skeletal muscle form interlocked arrays. Groups of four DHPRs (forming a tetrad) are located on alternate RyR1s. This association provides the structural framework for reciprocal signaling between the two channels. RyR3 are present in some skeletal muscles in association with RyR1 and in ratios up to 1:1. RyR3 neither induce formation of tetrads by DHPRs nor sustain EC coupling. RyR3 are located in a parajunctional position, in proximity of the RyR1-DHPR complexes, and they may be indirectly activated by calcium liberated via the RyR1 channels. RyR2 have two locations in cardiac muscle. One is at CRUs that contain DHPRs and RyRs. In these cardiac CRUs, RyR2 and alpha1c DHPR are in proximity of each other, but not closely linked, so that they may not have a direct molecular interaction. A second location of RyR2 is on SR cisternae that are not attached to surface membrane/T tubules. The RyR2 in these cisternae, which are often several microns away from any DHPRs, must necessarily be activated indirectly.

摘要

二氢吡啶受体(DHPRs)和兰尼碱受体(RyRs)在钙释放单元(CRUs)内的兴奋 - 收缩偶联过程中相互作用。这两种通道的位置及其定位与它们在兴奋 - 收缩偶联中的作用有关。骨骼肌的α1s DHPR和RyR1形成互锁阵列。四个DHPRs组成一组(形成一个四联体),位于交替的RyR1s上。这种关联为两个通道之间的相互信号传导提供了结构框架。RyR3存在于一些骨骼肌中,与RyR1相关联,比例高达1:1。RyR3既不诱导DHPRs形成四联体,也不维持兴奋 - 收缩偶联。RyR3位于旁连接位置,靠近RyR1 - DHPR复合物,它们可能被通过RyR1通道释放的钙间接激活。RyR2在心肌中有两个位置。一个位于包含DHPRs和RyRs的CRUs处。在这些心脏CRUs中,RyR2和α1c DHPR彼此靠近,但没有紧密连接,因此它们可能没有直接的分子相互作用。RyR2的第二个位置在不附着于表面膜/T小管的肌浆网池上。这些池中的RyR2通常距离任何DHPRs有几微米远,必然是被间接激活的。

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