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MsbA转运循环中能量转换的结构基础。

Structural basis of energy transduction in the transport cycle of MsbA.

作者信息

Dong Jinhui, Yang Guangyong, McHaourab Hassane S

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN 37232, USA.

出版信息

Science. 2005 May 13;308(5724):1023-8. doi: 10.1126/science.1106592.

Abstract

We used site-directed spin-labeling and electron paramagnetic resonance spectroscopy to characterize the conformational motion that couples energy expenditure to substrate translocation in the multidrug transporter MsbA. In liposomes, ligand-free MsbA samples conformations that depart from the crystal structures, including looser packing and water penetration along the periplasmic side. Adenosine triphosphate (ATP) binding closes the substrate chamber to the cytoplasm while increasing hydration at the periplasmic side, consistent with an alternating access model. Accentuated by ATP hydrolysis, the changes in the chamber dielectric environment and its geometry provide the likely driving force for flipping amphipathic substrates and a potential exit pathway. These results establish the structural dynamic basis of the power stroke in multidrug-resistant ATP-binding cassette (MDR ABC) transporters.

摘要

我们使用定点自旋标记和电子顺磁共振光谱来表征多药转运蛋白MsbA中能量消耗与底物转运偶联的构象运动。在脂质体中,无配体的MsbA样品的构象与晶体结构不同,包括更松散的堆积以及沿周质侧的水渗透。三磷酸腺苷(ATP)结合会封闭底物腔与细胞质的通道,同时增加周质侧的水合作用,这与交替通路模型一致。ATP水解加剧了腔室介电环境及其几何形状的变化,这可能是两亲性底物翻转的驱动力以及潜在的出口途径。这些结果确立了多药耐药性ATP结合盒(MDR ABC)转运蛋白中动力冲程的结构动力学基础。

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