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跨膜片段6中的G346残基参与P-糖蛋白的结构域间通讯。

Residue G346 in transmembrane segment six is involved in inter-domain communication in P-glycoprotein.

作者信息

Storm Janet, O'Mara Megan L, Crowley Emily H, Peall Jonathan, Tieleman D Peter, Kerr Ian D, Callaghan Richard

机构信息

Nuffield Department of Clinical Laboratory Sciences, John Radcliffe Hospital, University of Oxford, Oxford OX3 9DU, United Kingdom.

出版信息

Biochemistry. 2007 Sep 4;46(35):9899-910. doi: 10.1021/bi700447p. Epub 2007 Aug 14.

Abstract

Multidrug transporters such as P-glycoprotein require considerable inter-domain communication to couple energy utilization with substrate translocation. Elucidation of the regions or residues involved in these communication pathways is a key step in the eventual molecular description of multidrug transport. We used cysteine-scanning mutagenesis to probe the functional involvement of residues along the cytoplasmic half of transmembrane segment 6 (TM6) and its extension toward the nucleotide binding domain. The mutation of one residue (G346C) in this segment adversely affected drug transport in cells. Further investigation using purified protein revealed that the underlying biochemical effect was a reduction in basal ATP hydrolysis. This G346C mutation also affected the stimulation of ATPase activity in a drug dependent manner but had no effect on drug binding, ATP binding, or ADP release. Homology modeling of P-glycoprotein indicated that the G346C mutation caused a steric interaction between TM5 and TM6, thereby precluding a helical movement required to support ATP hydrolysis.

摘要

多药转运蛋白如P-糖蛋白需要大量的结构域间通讯,以将能量利用与底物转运偶联起来。阐明这些通讯途径中涉及的区域或残基是最终对多药转运进行分子描述的关键步骤。我们使用半胱氨酸扫描诱变来探究跨膜片段6(TM6)细胞质半段及其向核苷酸结合结构域延伸部分的残基的功能作用。该片段中一个残基(G346C)的突变对细胞中的药物转运产生了不利影响。使用纯化蛋白进行的进一步研究表明,潜在的生化效应是基础ATP水解减少。这种G346C突变也以药物依赖的方式影响ATP酶活性的刺激,但对药物结合、ATP结合或ADP释放没有影响。P-糖蛋白的同源建模表明,G346C突变导致TM5和TM6之间发生空间相互作用,从而排除了支持ATP水解所需的螺旋运动。

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