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对参与肌浆网囊泡Ca2+ -ATP酶催化的Ca2+ -Ca2+交换过程中的磷酸化酶的表征。

Characterization of the phosphoenzyme that is involved in the Ca2+ -Ca2+ exchange catalyzed by the Ca2+ -ATPase of sarcoplasmic reticulum vesicles.

作者信息

Inao S, Kanazawa T

出版信息

Biochim Biophys Acta. 1986 May 9;857(1):28-37. doi: 10.1016/0005-2736(86)90095-7.

Abstract

The rate of Ca2+ efflux was determined with 45Ca2+ -loaded sarcoplasmic reticulum vesicles (mainly with the light fraction of vesicles) at pH 6.5 and 0 degrees C. The efflux depended on external Ca2+, Mg2+, ATP and ADP, but it was not activated by AMP. The results indicate that the efflux is derived from Ca2+ -Ca2+ exchange mediated by the phosphoenzyme (EP) of membrane-bound Ca2+ -ATPase. EP was formed with Ca2+ -loaded vesicles (light fraction) under similar conditions without added ADP. The subsequent addition of EGTA and ADP induced triphasic EP dephosphorylation. Three species of EP (EP1, EP2, and EP3) were distinguished on the basis of this dephosphorylation kinetics, EP1, EP2, and EP3, corresponding to the first, second, and third phases of the dephosphorylation. Dephosphorylation of EP1 and EP2 resulted in stoichiometric ATP formation, while dephosphorylation of EP3 led to stoichiometric Pi liberation. The rate of Ca2+ efflux was compatible with that of EP2 dephosphorylation, whereas it was much lower than the rate of EP1 dephosphorylation and much higher than the rate of EP3 dephosphorylation. The intravesicular Ca2+ concentration dependence of the rate of EP2 dephosphorylation agreed with that of the rate of Ca2+ efflux. The results suggest that isomerization between EP1 and EP2 is the rate-limiting process in the Ca2+ -Ca2+ exchange and that EP3 is not involved in this exchange.

摘要

在pH 6.5和0℃条件下,使用装载了45Ca2+的肌质网囊泡(主要是囊泡的轻组分)测定Ca2+外流速率。外流依赖于细胞外Ca2+、Mg2+、ATP和ADP,但不受AMP激活。结果表明,外流源自膜结合Ca2+ -ATP酶的磷酸酶(EP)介导的Ca2+ -Ca2+交换。在类似条件下,无添加ADP时,装载Ca2+的囊泡(轻组分)可形成EP。随后添加EGTA和ADP会诱导EP三相去磷酸化。根据这种去磷酸化动力学可区分出三种EP(EP1、EP2和EP3),EP1、EP2和EP3分别对应去磷酸化的第一、第二和第三阶段。EP1和EP2的去磷酸化导致化学计量的ATP形成,而EP3的去磷酸化导致化学计量的Pi释放。Ca2+外流速率与EP2去磷酸化速率相符,但其远低于EP1去磷酸化速率且远高于EP3去磷酸化速率。EP2去磷酸化速率对囊泡内Ca2+浓度的依赖性与Ca2+外流速率的依赖性一致。结果表明,EP1和EP2之间的异构化是Ca2+ -Ca2+交换中的限速过程,且EP3不参与此交换。

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