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EmrE冷冻电镜结构中的准对称性为其跨膜结构域的建模提供了关键。

Quasi-symmetry in the cryo-EM structure of EmrE provides the key to modeling its transmembrane domain.

作者信息

Fleishman Sarel J, Harrington Susan E, Enosh Angela, Halperin Dan, Tate Christopher G, Ben-Tal Nir

机构信息

Department of Biochemistry, George S Wise Faculty of Life Sciences, Tel-Aviv University, Ramat Aviv, Israel.

出版信息

J Mol Biol. 2006 Nov 17;364(1):54-67. doi: 10.1016/j.jmb.2006.08.072. Epub 2006 Aug 30.

Abstract

Small multidrug resistance (SMR) transporters contribute to bacterial resistance by coupling the efflux of a wide range of toxic aromatic cations, some of which are commonly used as antibiotics and antiseptics, to proton influx. EmrE is a prototypical small multidrug resistance transporter comprising four transmembrane segments (M1-M4) that forms dimers. It was suggested recently that EmrE molecules in the dimer have different topologies, i.e. monomers have opposite orientations with respect to the membrane plane. A 3-D structure of EmrE acquired by electron cryo-microscopy (cryo-EM) at 7.5 Angstroms resolution in the membrane plane showed that parts of the structure are related by quasi-symmetry. We used this symmetry relationship, combined with sequence conservation data, to assign the transmembrane segments in EmrE to the densities seen in the cryo-EM structure. A C alpha model of the transmembrane region was constructed by considering the evolutionary conservation pattern of each helix. The model is validated by much of the biochemical data on EmrE with most of the positions that were identified as affecting substrate translocation being located around the substrate-binding cavity. A suggested mechanism for proton-coupled substrate translocation in small multidrug resistance antiporters provides a mechanistic rationale to the experimentally observed inverted topology.

摘要

小多药耐药(SMR)转运蛋白通过将多种有毒芳香阳离子(其中一些常用作抗生素和防腐剂)的外流与质子内流偶联,从而导致细菌耐药。EmrE是一种典型的小多药耐药转运蛋白,由四个跨膜片段(M1 - M4)组成,形成二聚体。最近有人提出,二聚体中的EmrE分子具有不同的拓扑结构,即单体相对于膜平面具有相反的方向。通过电子冷冻显微镜(cryo - EM)在膜平面上以7.5埃分辨率获得的EmrE三维结构表明,该结构的部分区域具有准对称性。我们利用这种对称关系,结合序列保守性数据,将EmrE中的跨膜片段与cryo - EM结构中看到的密度进行匹配。通过考虑每个螺旋的进化保守模式,构建了跨膜区域的Cα模型。该模型通过大量关于EmrE的生化数据得到验证,其中大多数被确定为影响底物转运的位置位于底物结合腔周围。小多药耐药反向转运蛋白中质子偶联底物转运的一种推测机制为实验观察到的反向拓扑结构提供了一个机制原理。

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