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通过稳态和瞬态动力学分析对分泌途径Ca2+/Mn2+-ATP酶(SPCA)1和肌浆网Ca2+-ATP酶(SERCA)1亚型进行功能比较。

Functional comparison between secretory pathway Ca2+/Mn2+-ATPase (SPCA) 1 and sarcoplasmic reticulum Ca2+-ATPase (SERCA) 1 isoforms by steady-state and transient kinetic analyses.

作者信息

Dode Leonard, Andersen Jens Peter, Raeymaekers Luc, Missiaen Ludwig, Vilsen Bente, Wuytack Frank

机构信息

Laboratory of Physiology, Catholic University of Leuven, Campus Gasthuisberg O/N, Herestraat 49, Bus 802, B-3000 Leuven, Belgium.

出版信息

J Biol Chem. 2005 Nov 25;280(47):39124-34. doi: 10.1074/jbc.M506181200. Epub 2005 Sep 28.

Abstract

Steady-state and transient kinetic studies were performed to functionally analyze the overall and partial reactions of the Ca(2+) transport cycle of the human secretory pathway Ca(2+)/Mn(2+)-ATPase 1 (SPCA1) isoforms: SPCA1a, SPCA1b, SPCA1c, and SPCA1d (encoded by ATP2C1, the gene defective in Hailey-Hailey disease) upon heterologous expression in mammalian cells. The expression levels of SPCA1 isoforms were 200-350-fold higher than in control cells except for SPCA1c, whose low expression level appears to be the effect of rapid degradation because of protein misfolding. Relative to SERCA1a, the active SPCA1a, SPCA1b, and SPCA1d enzymes displayed extremely high apparent affinities for cytosolic Ca(2+) in activation of the overall ATPase and phosphorylation activities. The maximal turnover rates of the ATPase activity for SPCA1 isoforms were 4.7-6.4-fold lower than that of SERCA1a (lowest for the shortest SPCA1a isoform). The kinetic analysis traced these differences to a decreased rate of the E(1) approximately P(Ca) to E(2)-P transition. The apparent affinity for inorganic phosphate was reduced in the SPCA1 enzymes. This could be accounted for by an enhanced rate of the E(2)-P hydrolysis, which showed constitutive activation, lacking the SERCA1a-specific dependence on pH and K(+).

摘要

进行了稳态和瞬态动力学研究,以功能分析人分泌途径Ca(2+)/Mn(2+)-ATP酶1(SPCA1)亚型:SPCA1a、SPCA1b、SPCA1c和SPCA1d(由Hailey-Hailey病缺陷基因ATP2C1编码)在哺乳动物细胞中异源表达时Ca(2+)转运循环的整体和部分反应。除SPCA1c外,SPCA1亚型的表达水平比对照细胞高200 - 350倍,SPCA1c的低表达水平似乎是由于蛋白质错误折叠导致快速降解的结果。相对于SERCA1a,活性SPCA1a、SPCA1b和SPCA1d酶在激活整体ATP酶和磷酸化活性时对胞质Ca(2+)表现出极高的表观亲和力。SPCA1亚型ATP酶活性的最大周转率比SERCA1a低4.7 - 6.4倍(最短的SPCA1a亚型最低)。动力学分析将这些差异追溯到E(1)约P(Ca)到E(2)-P转变速率的降低。SPCA1酶对无机磷酸盐的表观亲和力降低。这可以通过E(2)-P水解速率的增加来解释,E(2)-P水解表现出组成型激活,缺乏SERCA1a对pH和K(+)的特异性依赖性。

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