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首页> 外文期刊>Frontiers in Microbiology >Hoisting-Loop in Bacterial Multidrug Exporter AcrB Is a Highly Flexible Hinge That Enables the Large Motion of the Subdomains
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Hoisting-Loop in Bacterial Multidrug Exporter AcrB Is a Highly Flexible Hinge That Enables the Large Motion of the Subdomains

机译:细菌多药出口商AcrB中的提升环是一种高度灵活的铰链,可实现子域的大运动

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The overexpression of RND-type exporters is one of the main causes of multidrug resistance (MDR) in Gram-negative pathogens. In RND transporters, such as Escherichia coli 's main efflux pump AcrB, drug efflux occurs in the porter domain, while protons flow through the transmembrane domain: remote conformational coupling. At the border of a transmembrane helix (TM8) and subdomain PC2, there is a loop which makes a hoisting movement by a random-coil-to-α-helix change, and opens and closes a drug channel entrance. This loop is supposed to play a key role in the allosteric conformational coupling between the transmembrane and porter domain. Here we show the results of a series of flexibility loop-mutants of AcrB. We determined the crystal structure of a three amino acid truncated loop mutant, which is still a functional transporter, and show that the short α-helix between Cβ15 and the loop unwinds to a random coil in the access and binding monomers and in the extrusion monomer it makes a partially stretched coil-to-helix change. The loop has undergone compensatory conformational changes and still facilitates the opening and closing of the channel. In addition, more flexible mutated loops (proline mutated and significantly elongated) can still function during export. The flexibility in this region is however limited, as an even more truncated mutant (six amino acid deletion) becomes mostly inactive. We found that the hoisting-loop is a highly flexible hinge that enables the conformational energy transmission passively.
机译:RND型出口商的过度表达是革兰氏阴性病原体多药耐药性(MDR)的主要原因之一。在RND转运蛋白中,例如大肠杆菌的主要外排泵AcrB,药物外排发生在搬运域中,而质子则流经跨膜域:远程构象耦合。在跨膜螺旋(TM8)和子域PC2的边界处,有一个回路,该回路通过从无规线圈到α螺旋的变化进行提升运动,并打开和关闭药物通道入口。认为该环在跨膜和波特结构域之间的变构构象偶联中起关键作用。在这里,我们显示了AcrB一系列柔性环突变的结果。我们确定了三个氨基酸截短的环状突变体的晶体结构,该突变体仍然是一个功能性转运子,并表明Cβ15和环状分子之间的短α螺旋在进入和结合单体以及在挤出单体中解开为无规卷曲它使线圈到螺旋的部分拉伸变化。回路经历了补偿性构象变化,并且仍然有助于通道的打开和关闭。此外,在导出过程中,仍然可以使用更灵活的变异环(脯氨酸变异并显着延长)。然而,该区域的灵活性受到限制,因为甚至更多的截短的突变体(六个氨基酸缺失)大多变得无效。我们发现,提升环是一种高度灵活的铰链,能够被动地传递构象能量。

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