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肌浆网或内质网钙泵家族同工型之间的功能比较。

Functional comparisons between isoforms of the sarcoplasmic or endoplasmic reticulum family of calcium pumps.

作者信息

Lytton J, Westlin M, Burk S E, Shull G E, MacLennan D H

机构信息

Renal Division, Brigham and Women's Hospital, Boston, Massachusetts 02115.

出版信息

J Biol Chem. 1992 Jul 15;267(20):14483-9.

PMID:1385815
Abstract

ATP-dependent calcium pumps that reside in intracellular organelles are encoded by a family of structurally related enzymes, termed the sarcoplasmic or endoplasmic reticulum Ca(2+)-ATPases (SERCA), which each have a distinct pattern of tissue-specific and developmentally regulated expression. A COS-1 cell expression system was used to examine the biochemical properties of the isoforms: SERCA1 (fast-twitch skeletal muscle). SERCA2a (cardiac/slow-twitch skeletal muscle), SERCA2b (ubiquitous smooth- and non-muscle), and SERCA3 (non-muscle). Each isoform was expressed efficiently and appeared to be targeted to the endoplasmic reticulum. All isoforms displayed qualitatively similar enzymatic properties and were activated by calcium in a cooperative manner with a Hill coefficient of 2. The quantitative properties of SERCA1 and SERCA2a (the muscle isoforms) were identical in all respects. SERCA2b, however, appeared to have a lower turnover rate for both calcium transport and ATP hydrolysis. SERCA3 displayed a reduced apparent affinity for calcium, an increased apparent affinity for vanadate, and an altered pH dependence when compared with the other isoforms. These properties are consistent with an enzyme in which the equilibrium between the E1 and E2 conformations is shifted toward the E2 state.

摘要

存在于细胞内细胞器中的ATP依赖性钙泵由一组结构相关的酶编码,这些酶被称为肌浆网或内质网Ca(2+) - ATP酶(SERCA),它们各自具有独特的组织特异性和发育调控表达模式。利用COS - 1细胞表达系统来研究这些同工型的生化特性:SERCA1(快肌骨骼肌)、SERCA2a(心脏/慢肌骨骼肌)、SERCA2b(普遍存在于平滑肌和非肌肉组织)以及SERCA3(非肌肉组织)。每种同工型均高效表达,且似乎定位于内质网。所有同工型均表现出定性相似的酶学特性,并以协同方式被钙激活,希尔系数为2。SERCA1和SERCA2a(肌肉同工型)的定量特性在各方面均相同。然而,SERCA2b在钙转运和ATP水解方面的周转速率似乎较低。与其他同工型相比,SERCA3对钙的表观亲和力降低,对钒酸盐的表观亲和力增加,且pH依赖性发生改变。这些特性与一种E1和E2构象之间的平衡向E2状态偏移的酶一致。

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