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膜融合蛋白EmrA的寡聚化结构域和药物结合结构域的鉴定

Identification of oligomerization and drug-binding domains of the membrane fusion protein EmrA.

作者信息

Borges-Walmsley M Ines, Beauchamp Jeremy, Kelly Sharon M, Jumel Kornelia, Candlish Denise, Harding Stephen E, Price Nicholas C, Walmsley Adrian R

机构信息

Centre for Infectious Diseases, Wolfson Research Institute, University of Durham, Queen's Campus, Stockton-on-Tees, TS17 6BH, United Kingdom.

出版信息

J Biol Chem. 2003 Apr 11;278(15):12903-12. doi: 10.1074/jbc.M209457200. Epub 2002 Dec 13.

Abstract

Many pathogenic Gram-negative bacteria possess tripartite transporters that catalyze drug extrusion across the inner and outer membranes, thereby conferring resistance. These transporters consist of inner (IMP) and outer (OMP) membrane proteins, which are coupled by a periplasmic membrane fusion (MFP) protein. However, it is not know whether the MFP translocates the drug between the membranes, by acting as a channel, or whether it brings the IMP and OMP together, facilitating drug transfer. The MFP EmrA has an elongated periplasmic domain, which binds transported drugs, and is anchored to the inner membrane by a single alpha-helix, which contains a leucine zipper dimerization domain. Consistent with CD and hydrodynamic analyses, the periplasmic domain is predicted to be composed of a beta-sheet subdomain and an alpha-helical coiled-coil. We propose that EmrA forms a trimer in which the coiled-coils radiate across the periplasm, where they could sequester the OMP TolC. The "free" leucine zipper in the EmrA trimer might stabilize the interaction with the IMP EmrB, which also possesses leucine zipper motifs in the putative N- and C-terminal helices. The beta-sheet subdomain of EmrA would sit at the membrane surface adjacent to the EmrB, from which it receives the transported drug, inducing a conformational change that triggers the interaction with the OMP.

摘要

许多致病性革兰氏阴性菌拥有三联转运蛋白,可催化药物穿过内膜和外膜排出,从而产生耐药性。这些转运蛋白由内膜(IMP)和外膜(OMP)蛋白组成,它们通过周质膜融合(MFP)蛋白相互偶联。然而,目前尚不清楚MFP是通过充当通道在膜之间转运药物,还是将IMP和OMP聚集在一起以促进药物转移。MFP EmrA具有一个细长的周质结构域,可结合转运的药物,并通过一个单一的α螺旋锚定在内膜上,该α螺旋包含一个亮氨酸拉链二聚化结构域。与圆二色光谱(CD)和流体动力学分析结果一致,预测周质结构域由一个β折叠亚结构域和一个α螺旋卷曲螺旋组成。我们提出,EmrA形成一个三聚体,其中卷曲螺旋在周质中呈放射状分布,在那里它们可以隔离OMP TolC。EmrA三聚体中“游离”的亮氨酸拉链可能会稳定与IMP EmrB的相互作用,EmrB在假定的N端和C端螺旋中也具有亮氨酸拉链基序。EmrA的β折叠亚结构域将位于与EmrB相邻的膜表面,从EmrB接收转运的药物,诱导构象变化,从而触发与OMP的相互作用。

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