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心肌中的钠/钙交换体:分子生物学、细胞功能及其在兴奋-收缩偶联中的特殊作用。

Sodium/calcium exchanger in heart muscle: molecular biology, cellular function, and its special role in excitation-contraction coupling.

作者信息

Schulze D, Kofuji P, Hadley R, Kirby M S, Kieval R S, Doering A, Niggli E, Lederer W J

机构信息

University of Maryland School of Medicine, Baltimore 21201.

出版信息

Cardiovasc Res. 1993 Oct;27(10):1726-34. doi: 10.1093/cvr/27.10.1726.

Abstract

The Na/Ca exchanger has been examined with respect to its molecular biology, its cellular function, and its role in excitation-contraction coupling. The Na/Ca exchanger plays a central part in excitation-contraction coupling, setting the level of sarcoplasmic reticular calcium and contributing to the triggering of sarcoplasmic reticular calcium release. Functional biophysical studies with isolated single cells and caged calcium provide evidence that the Na/Ca exchanger works as a two step sequential transporter. In the heart there are about 250 exchangers.mu-2, operating at a turnover rate of up to about 2500.s-1, with the exchanger carrying -2.56 charges under normal conditions. The Na/Ca exchanger has been recently cloned from diverse mammalian species and several tissues and is largely conserved. It is clear, however, that the function of the Na/Ca exchanger is different in the different tissues. Thus work is in progress in several laboratories, including ours, to determine how the Na/Ca exchanger achieves its tissue specific function. Several modulatory motifs have been seen in studies of the exchanger that may explain some of the tissue specific differences. Interestingly the modulation of the Na/Ca exchanger (for example, by protons, sodium, calcium, ATP, calmodulin) seems to arise from interactions with the intracellular loop.

摘要

人们已从分子生物学、细胞功能及其在兴奋 - 收缩偶联中的作用等方面对钠钙交换体进行了研究。钠钙交换体在兴奋 - 收缩偶联中起着核心作用,设定肌浆网钙水平并促成肌浆网钙释放的触发。对分离的单细胞和笼锁钙进行的功能性生物物理研究提供了证据,表明钠钙交换体作为一种两步顺序转运体发挥作用。在心脏中,每平方微米约有250个交换体,运转速率高达约2500次/秒,在正常条件下该交换体携带 -2.56个电荷。最近已从多种哺乳动物物种和多个组织中克隆出钠钙交换体,且其在很大程度上是保守的。然而,很明显钠钙交换体在不同组织中的功能有所不同。因此,包括我们实验室在内的几个实验室正在开展工作,以确定钠钙交换体是如何实现其组织特异性功能的。在对该交换体的研究中已发现了几个调节基序,这可能解释了一些组织特异性差异。有趣的是,钠钙交换体的调节作用(例如,受质子、钠、钙、ATP、钙调蛋白的调节)似乎源于与细胞内环的相互作用。

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