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快速骨骼肌肌浆网(Ca2+-Mg2+)-ATP酶的磷酸化构象状态可介导Ca2+的快速释放。

A phosphorylated conformational state of the (Ca2+-Mg2+)-ATPase of fast skeletal muscle sarcoplasmic reticulum can mediate rapid Ca2+ release.

作者信息

Chiesi M, Wen Y S

出版信息

J Biol Chem. 1983 May 25;258(10):6078-85.

PMID:6133856
Abstract

A rapid Ca2+ release from Ca2+-loaded sarcoplasmic reticulum vesicles from fast skeletal muscle can be induced under conditions which permit the formation of a stable phosphorylated intermediate of the (Ca2+-Mg2+)-ATPase. Such a state can be achieved experimentally by phosphorylating the ATPase in the absence of Mg2+ ions, which otherwise would stimulate the dephosphorylation step(s). Also, quercetine stimulates the rapid release of Ca2+ if used in the concentration range which does not produce inhibition of phosphoenzyme formation, but which inhibits phosphoenzyme dephosphorylation. The rapid efflux of Ca2+ ions proceeds as long as the low affinity Ca2+-binding sites facing the lumen of the vesicles are saturated and as long as Ca2+ is removed from the catalytic sites facing the cytosol. A molecular mechanism of the phosphoenzyme-mediated Ca2+ release is proposed. This mechanism is based on a rapid shuttling of the ATPase molecules between an ADP-sensitive and an ADP-insensitive phosphorylated state.

摘要

在能够形成(Ca2+-Mg2+)-ATP 酶稳定磷酸化中间体的条件下,可诱导快速骨骼肌肌质网囊泡中 Ca2+的快速释放。通过在不存在 Mg2+离子的情况下使 ATP 酶磷酸化,可通过实验实现这种状态,否则 Mg2+离子会刺激去磷酸化步骤。此外,如果槲皮素在不抑制磷酸酶形成但抑制磷酸酶去磷酸化的浓度范围内使用,它会刺激 Ca2+的快速释放。只要面向囊泡腔的低亲和力 Ca2+结合位点饱和,并且只要 Ca2+从面向细胞质的催化位点去除,Ca2+离子的快速外流就会持续。提出了磷酸酶介导的 Ca2+释放的分子机制。该机制基于 ATP 酶分子在 ADP 敏感和 ADP 不敏感的磷酸化状态之间的快速穿梭。

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