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心脏细胞中钙的稳态。

The homeostasis of calcium in heart cells.

作者信息

Carafoli E

出版信息

J Mol Cell Cardiol. 1985 Mar;17(3):203-12. doi: 10.1016/s0022-2828(85)80003-1.

Abstract

The signalling function of Ca2+ demands a very low ionic concentration of the cation within heart cells. This is achieved by two mechanisms, the reversible complexation of calcium by non membranous (protein) ligands, and its binding and transport by transmembrane proteins. The second mechanism is more efficient, since the complexation by soluble proteins is limited by their amount in heart sarcoplasm or within heart organelles, whereas membrane proteins can regulate calcium efficiently, even if present in low amounts, if they 'return' rapidly in the uncomplexed from after each binding and transport cycle. Seven systems for the transport of calcium have been documented in heart membranes. There are located in sarcolemma, two in mitochondria, two in sarcoplasmic reticulum. These seven systems can be simplified to four basic transport modes: ATPases, Na+/Ca2+ exchangers, channels, electrophoretic uniporters. They have either low or high calcium affinity, thus serving different purposes in the various phases of the functional cycle of heart cells. On an integrated level, sarcoplasmic reticulum can be considered as the organelle presiding over the rapid and fine regulation of Ca2+ linked to the contraction/relaxation cycle. Sarcolemma regulates Ca2+ with both low and high affinity, but handles a quantitatively minor amount of Ca2+ (trigger Ca2+). Mitochondria are low-affinity organelles, whose primary role probably is the regulation of Ca2+ in their matrix, rather than in the sarcoplasm.

摘要

钙离子的信号传导功能要求心肌细胞内该阳离子的离子浓度非常低。这通过两种机制实现,一是通过非膜性(蛋白质)配体对钙的可逆络合,二是通过跨膜蛋白对其进行结合和转运。第二种机制更有效,因为可溶性蛋白质的络合作用受心肌肌浆或心肌细胞器中其含量的限制,而膜蛋白即使含量很低,只要在每次结合和转运循环后能迅速以未络合形式“返回”,就能有效地调节钙。已记录到心肌膜中有七种钙转运系统。它们分布在肌膜、线粒体中有两种、肌浆网中有两种。这七种系统可简化为四种基本转运模式:ATP酶、钠/钙交换体、通道、电渗单向转运体。它们对钙的亲和力有高有低,因此在心肌细胞功能循环的不同阶段发挥不同作用。从整体层面来看,肌浆网可被视为负责与收缩/舒张循环相关的钙离子快速精细调节的细胞器。肌膜以高亲和力和低亲和力调节钙离子,但处理的钙离子数量较少(触发钙)。线粒体是低亲和力细胞器,其主要作用可能是调节基质中的钙离子,而非肌浆中的钙离子。

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