首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A periplasmic coiled-coil interface underlying TolC recruitment and the assembly of bacterial drug efflux pumps
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A periplasmic coiled-coil interface underlying TolC recruitment and the assembly of bacterial drug efflux pumps

机译:TolC募集和细菌药物外排泵组装背后的周质卷曲螺旋界面

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摘要

Bacteria such as Escherichia coli and Pseudomonas aeruginosa expel antibiotics and other inhibitors via tripartite multidrug efflux pumps spanning the inner and outer membranes and the intervening periplasmic space. A key event in pump assembly is the recruitment of an outer membrane-anchored TolC exit duct by the adaptor protein of a cognate inner membrane translocase, establishing a contiguous transenvelope efflux pore. We describe the underlying interaction of juxtaposed periplasmic exit duct and adaptor coiled-coils in the widespread RND-type pump TolC/AcrAB of E. coli, using in vivo cross-linking to map the extent of intermolecular contacts. Cross-linking of site-specific TolC cysteine variants to wild-type AcrA adaptor identified residues on the lower α-helical barrel domain of TolC, defining a contiguous cluster close to the entrance aperture of the exit duct. Reciprocally, site-specific cross-linking of AcrA cysteine variants to wild-type TolC identified the interaction surface on the adaptor within the N-terminal α-helix of the AcrA coiled-coil. The experimental data allowed a data-driven docking approach to model the interaction surface central to pump assembly. The lowest energy docked model satisfying all of the cross-link distance constraints places the adaptor at the intramolecular groove formed by the TolC entrance helices, aligning the adaptor coiled-coil with the exposed TolC outer helix. A key feature of this positioning is that it allows space for the proposed movement of the inner coil of TolC during transition to its open state.
机译:诸如大肠埃希氏菌和铜绿假单胞菌之类的细菌通过跨内,外膜以及间质周质空间的三方多药外排泵排出抗生素和其他抑制剂。泵组装中的关键事件是通过同源内膜转位酶的衔接蛋白募集外膜锚定的TolC出口导管,从而建立连续的跨包膜外排孔。我们描述了并列的周质出口管道和适配器盘绕线圈在大肠杆菌的广泛RND型泵TolC / AcrAB中的潜在相互作用,使用体内交联来映射分子间接触的程度。站点特定的TolC半胱氨酸变体与野生型AcrA衔接子的交联可识别TolC下部α螺旋桶结构域上的残基,从而定义了靠近出口导管入口孔的连续簇。相应地,AcrA半胱氨酸变体与野生型TolC的位点特异性交联确定了AcrA卷曲螺旋N末端α-螺旋内衔接子的相互作用表面。实验数据允许采用数据驱动的对接方法来建模泵组件中心的相互作用表面。满足所有交联距离约束的最低能量对接模型将适配器放置在由TolC入口螺旋形成的分子内凹槽中,将适配器的盘绕线圈与裸露的TolC外螺旋对准。该定位的关键特征在于,它为TolC的内部线圈在过渡到打开状态期间的建议运动留出了空间。

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