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Reconstitution of a nanomachine driving the assembly of proteins into bacterial outer membranes

机译:纳米机器的重构,将蛋白质组装成细菌外膜

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摘要

In biological membranes, various protein secretion devices function as nanomachines, and measuring the internal movements of their component parts is a major technological challenge. The translocation and assembly module (TAM) is a nanomachine required for virulence of bacterial pathogens. We have reconstituted a membrane containing the TAM onto a gold surface for characterization by quartz crystal microbalance with dissipation (QCM-D) and magnetic contrast neutron reflectrometry (MCNR). The MCNR studies provided structural resolution down to 1??, enabling accurate measurement of protein domains projecting from the membrane layer. Here we show that dynamic movements within the TamA component of the TAM are initiated in the presence of a substrate protein, Ag43 , and that these movements recapitulate an initial stage in membrane protein assembly. The reconstituted system provides a powerful new means to study molecular movements in biological membranes, and the technology is widely applicable to studying the dynamics of diverse cellular nanomachines.
机译:在生物膜中,各种蛋白质分泌装置起着纳米机械的作用,而测量其组成部分的内部运动是一项重大的技术挑战。易位和组装模块(TAM)是细菌病原体毒性所需的纳米机器。我们已经将包含TAM的膜重构到金表面上,以通过具有耗散的石英晶体微天平(QCM-D)和磁对比中子反射仪(MCNR)进行表征。 MCNR研究提供了低至1 -6的结构分辨率,从而能够准确测量从膜层投射的蛋白质结构域。在这里,我们显示TAM的TamA组件内的动态运动是在存在底物蛋白Ag43的情况下启动的,并且这些运动概括了膜蛋白组装的初始阶段。重构后的系统为研究生物膜中的分子运动提供了强大的新手段,并且该技术可广泛应用于研究各种细胞纳米机器的动力学。

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