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钙泵的结构与功能。

Structure and function of the calcium pump.

作者信息

Stokes David L, Green N Michael

机构信息

Skirball Institute of Biomolecular Medicine, Department of Cell Biology, New York University School of Medicine, New York, New York 10012, USA.

出版信息

Annu Rev Biophys Biomol Struct. 2003;32:445-68. doi: 10.1146/annurev.biophys.32.110601.142433. Epub 2003 Feb 19.

Abstract

Active transport of cations is achieved by a large family of ATP-dependent ion pumps, known as P-type ATPases. Various members of this family have been targets of structural and functional investigations for over four decades. Recently, atomic structures have been determined for Ca2+-ATPase by X-ray crystallography, which not only reveal the architecture of these molecules but also offer the opportunity to understand the structural mechanisms by which the energy of ATP is coupled to calcium transport across the membrane. This energy coupling is accomplished by large-scale conformational changes. The transmembrane domain undergoes plastic deformations under the influence of calcium binding at the transport site. Cytoplasmic domains undergo dramatic rigid-body movements that deliver substrates to the catalytic site and that establish new domain interfaces. By comparing various structures and correlating functional data, we can now begin to associate the chemical changes constituting the reaction cycle with structural changes in these domains.

摘要

阳离子的主动运输是由一大类依赖ATP的离子泵实现的,这类离子泵被称为P型ATP酶。在过去四十多年里,该家族的各个成员一直是结构和功能研究的对象。最近,通过X射线晶体学确定了钙ATP酶的原子结构,这不仅揭示了这些分子的结构,还提供了机会来理解ATP的能量与钙跨膜运输相偶联的结构机制。这种能量偶联是通过大规模的构象变化来实现的。跨膜结构域在运输位点钙结合的影响下发生塑性变形。细胞质结构域经历剧烈的刚体运动,将底物输送到催化位点并建立新的结构域界面。通过比较各种结构并关联功能数据,我们现在可以开始将构成反应循环的化学变化与这些结构域的结构变化联系起来。

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