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首页> 外文期刊>ACS Omega >Electrostatic Switching Controls Channel Dynamics of the Sensor Protein VirB10 in A. tumefaciens Type IV Secretion System
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Electrostatic Switching Controls Channel Dynamics of the Sensor Protein VirB10 in A. tumefaciens Type IV Secretion System

机译:静电开关控制传感器蛋白毒物血管型IV分泌系统的传感器蛋白毒素virb10的通道动力学

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摘要

Type IV secretion systems are large nanomachines assembled across the bacterial cell envelope for effector translocation and conjugation. VirB10 traverses the inner and outer membranes, sensing cellular signals for coordinating the conformational switch for pilus biogenesis and/or secretion. Mutations uncoupling secretion from pilus biogenesis were identified in Agrobacterium tumefaciens VirB10 including a gating defect mutation G272R that made VirB10 unresponsive to intracellular ATP, causing unregulated secretion of VirE2 in a contact-independent manner. Comparative long-timescale molecular dynamics of the wild type and G272R mutant of the A. tumefaciens VirB10_(CTD) tetradecamer reveals how the G272R mutation locks the oligomer in a rigid conformation by swapping the ionic interactions between the loops from the β-barrel close to the inner leaflet of the outer membrane. This electrostatic switching changes the allosteric communication pathway from the extracellular loop to the base of the barrel, suggesting that the local conformational dynamics in the loops can gate information across VirB10.
机译:IV型分泌系统是跨细菌细胞包膜组装的大型纳米槽,用于效应易位和缀合。 virb10穿过内膜和外膜,感测蜂窝信号,用于协调针刺生物发生和/或分泌的构象开关。在 Tumefaciens virb10中鉴定了来自菌毛生物发生的突变分泌物,包括G272R,其使VIRB10对细胞内ATP无响应,导致vire2以独立于接触的方式进行未经调节的分泌。野生型和G272R突变体的比较长时间分子动力学 a。 Tumefaciens virb10_(ctd)四缩叶植物揭示G272R突变如何通过从靠近外膜的内部瓣叶的β-筒之间交换环之间的离子相互作用来锁定刚性构象。该静电切换将来自细胞外环的变构通信路径改变为桶的基部,表明环路中的局部构象动态可以跨越virb10的栅极信息。

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