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通过定点自旋标记研究的MsbA同型二聚体的静息态构象。

Resting state conformation of the MsbA homodimer as studied by site-directed spin labeling.

作者信息

Buchaklian Adam H, Funk Andrea L, Klug Candice S

机构信息

Department of Biophysics, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, Wisconsin 53226, USA.

出版信息

Biochemistry. 2004 Jul 6;43(26):8600-6. doi: 10.1021/bi0497751.

Abstract

MsbA is the ABC transporter for lipid A and is found in the inner membranes of Gram-negative bacteria such as Escherichia coli. Without MsbA present, bacterial cells accumulate a toxic amount of lipid A within their inner membranes. A crystal structure of MsbA was recently obtained that provides an excellent starting point for functional dynamics studies in membranes [Chang, and Roth (2001) Science 293, 1793-1800]. Although a structure of MsbA is now available, many questions remain concerning its mechanism of transport. Site-directed spin labeling (SDSL) electron paramagnetic resonance (EPR) spectroscopy is a powerful approach for characterizing local areas within a large protein structure in addition to detecting and following changes in local structure due to dynamic interactions within a protein. The quaternary structure of the resting state of the MsbA homodimer reconstituted into lipid membranes has been evaluated by SDSL EPR spectroscopy and chemical cross-linking techniques. SDSL and cross-linking results are consistent with the controversial resting state conformation of the MsbA homodimer found in the crystal structure, with the tips of the transmembrane helices forming a dimer interface. The position of MsbA in the membrane bilayer along with the relative orientation of the transmembrane helical bundles with respect to one another has been determined. Characterization of the resting state of the MsbA homodimer is essential for future studies on the functional dynamics of this membrane transporter.

摘要

MsbA是脂质A的ABC转运蛋白,存在于革兰氏阴性菌(如大肠杆菌)的内膜中。如果没有MsbA,细菌细胞会在内膜中积累有毒量的脂质A。最近获得了MsbA的晶体结构,这为膜功能动力学研究提供了一个很好的起点[张和罗斯(2001年)《科学》293卷,1793 - 1800页]。尽管现在已有MsbA的结构,但关于其转运机制仍有许多问题。定点自旋标记(SDSL)电子顺磁共振(EPR)光谱法是一种强大的方法,除了检测和跟踪由于蛋白质内部动态相互作用引起的局部结构变化外,还可用于表征大型蛋白质结构内的局部区域。通过SDSL EPR光谱法和化学交联技术对重构到脂质膜中的MsbA同型二聚体静止状态的四级结构进行了评估。SDSL和交联结果与晶体结构中发现的MsbA同型二聚体有争议的静止状态构象一致,跨膜螺旋的末端形成二聚体界面。已确定MsbA在膜双分子层中的位置以及跨膜螺旋束彼此之间的相对取向。表征MsbA同型二聚体的静止状态对于该膜转运蛋白功能动力学的未来研究至关重要。

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