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骨骼肌肌浆网中Ca2+释放的机制。

Mechanisms of Ca2+ release from sarcoplasmic reticulum of skeletal muscle.

作者信息

Martonosi A N

出版信息

Physiol Rev. 1984 Oct;64(4):1240-320. doi: 10.1152/physrev.1984.64.4.1240.

Abstract

Since the discovery of the ATP-dependent Ca2+ transport by SR a little over two decades ago, remarkable progress has been made in understanding the kinetic mechanism of Ca2+ transport and ATP hydrolysis and the role of phosphorylated enzyme intermediates in the energetics of active ion transport. Significant information has accumulated on the structure and composition of the SR membrane, on the primary amino acid sequence of the Ca2+-pump protein, and on the adaptive changes in the Ca2+-transport function during embryonic development and muscle activity. The discovery of the charge movement as a step in EC coupling and the use of novel optical probes for analyzing potential and calcium transients in living muscle changed the enigma of EC coupling into a well-defined problem that is clearly open to rational solutions. Studies on the structure, composition, and function of the isolated components of the T-SR system have just begun. The effectiveness of this approach will depend on successful maintenance of the functionally intact structure of the T-SR junction during the disruption of the muscle, which is required for the isolation of pure membrane elements. Reconstitution of a functionally competent junctional complex from isolated components is the ultimate aim of these studies, but the path toward that goal is so difficult that much of the mechanism of EC coupling may be solved by electrophysiologists, before reconstitution is achieved. The avalanche of information on Ca2+ releases induced by various agents under diverse and sometimes ill-defined conditions led to formulation of a series of hypothetical mechanisms. Of these, Ca2+-induced Ca2+ release promises to be an important element of the physiological Ca2+-release process, but few of the other proposed mechanisms can be eliminated from consideration at this stage. The impressive progress of the last few years has left several fundamental problems largely unsolved. Among these are the physical mode of translocation of Ca2+ across the membrane and the molecular mechanism of the coupling of Ca2+ transport to ATP hydrolysis; the regulation of the concentration of the Ca2+-pump protein and calcium in the SR of fast and slow skeletal, cardiac, and smooth muscles; the gating mechanisms that regulate the graded release of calcium from the SR and the composition and biochemical characterization of the triad; the role of SR membrane potential in the regulation of Ca2+ fluxes in vivo; the permeability of SR membranes in living muscle; the functional significance of protein-protein interactions in the SR with respect to Ca2+ transport and permeability control.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

自从二十多年前发现肌浆网(SR)存在依赖ATP的Ca2+转运以来,在理解Ca2+转运和ATP水解的动力学机制以及磷酸化酶中间体在主动离子转运能量学中的作用方面取得了显著进展。关于SR膜的结构和组成、Ca2+泵蛋白的一级氨基酸序列以及胚胎发育和肌肉活动期间Ca2+转运功能的适应性变化,已经积累了大量信息。电荷移动作为兴奋-收缩(EC)偶联过程中的一个步骤被发现,以及使用新型光学探针分析活肌肉中的电位和钙瞬变,将EC偶联的谜团转变为一个明确的问题,显然可以找到合理的解决方案。对横管-肌浆网(T-SR)系统分离成分的结构、组成和功能的研究刚刚开始。这种方法的有效性将取决于在破坏肌肉以分离纯膜成分的过程中,能否成功维持T-SR连接处功能完整的结构。从分离的成分重建功能健全的连接复合体是这些研究的最终目标,但通向该目标的道路非常困难,以至于在实现重建之前,电生理学家可能会解决许多EC偶联机制的问题。在各种不同且有时定义不明确的条件下,由各种试剂诱导的Ca2+释放的大量信息导致了一系列假设机制的形成。其中,Ca2+诱导的Ca2+释放有望成为生理性Ca2+释放过程的一个重要因素,但在现阶段,很少有其他提出的机制可以被排除在考虑之外。过去几年令人瞩目的进展留下了几个基本问题,在很大程度上尚未解决。其中包括Ca2+跨膜转运的物理方式以及Ca2+转运与ATP水解偶联的分子机制;快、慢骨骼肌、心肌和平滑肌SR中Ca2+泵蛋白和钙浓度的调节;调节Ca2+从SR分级释放的门控机制以及三联体的组成和生化特性;SR膜电位在体内调节Ca2+通量中的作用;活肌肉中SR膜的通透性;SR中蛋白质-蛋白质相互作用在Ca2+转运和通透性控制方面的功能意义。(摘要截取自400字)

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