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Crystal structures of a multidrug transporter reveal a functionally rotating mechanism.

机译:多药转运蛋白的晶体结构揭示了一种功能旋转机制。

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AcrB is a principal multidrug efflux transporter in Escherichia coli that cooperates with an outer-membrane channel, TolC, and a membrane-fusion protein, AcrA. Here we describe crystal structures of AcrB with and without substrates. The AcrB-drug complex consists of three protomers, each of which has a different conformation corresponding to one of the three functional states of the transport cycle. Bound substrate was found in the periplasmic domain of one of the three protomers. The voluminous binding pocket is aromatic and allows multi-site binding. The structures indicate that drugs are exported by a three-step functionally rotating mechanism in which substrates undergo ordered binding change.
机译:AcrB是大肠杆菌中主要的多药外排转运蛋白,可与外膜通道TolC和膜融合蛋白AcrA协同作用。在这里,我们描述了具有和不具有衬底的AcrB的晶体结构。 AcrB-药物复合物由三个protomer组成,每个protomer具有与运输循环的三个功能状态之一相对应的不同构象。在三个启动子之一的周质结构域中发现结合的底物。大量的结合口袋是芳香的,可以进行多位结合。该结构表明药物通过三步功能旋转机制输出,其中基质经历了有序的结合变化。

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