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Assembly of the Transmembrane Domain of E. coli PhoQ Histidine Kinase: Implications for Signal Transduction from Molecular Simulations

机译:大肠杆菌PhoQ组氨酸激酶跨膜结构域的组装:从分子模拟信号转导的含义。

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The PhoQP two-component system is a signaling complex essential for bacterial virulence and cationic antimicrobial peptide resistance. PhoQ is the histidine kinase chemoreceptor of this tandem machine and assembles in a homodimer conformation spanning the bacterial inner membrane. Currently, a full understanding of the PhoQ signal transduction is hindered by the lack of a complete atomistic structure. In this study, an atomistic model of the key transmembrane (TM) domain is assembled by using molecular simulations, guided by experimental cross-linking data. The formation of a polar pocket involving Asn202 in the lumen of the tetrameric TM bundle is crucial for the assembly and solvation of the domain. Moreover, a concerted displacement of the TM helices at the periplasmic side is found to modulate a rotation at the cytoplasmic end, supporting the transduction of the chemical signal through a combination of scissoring and rotational movement of the TM helices.
机译:PhoQP两组分系统是一种信号复合物,对于细菌毒性和阳离子抗微生物肽耐药性至关重要。 PhoQ是此串联机器的组氨酸激酶化学感受器,并以跨越细菌内膜的同源二聚体构象组装。当前,由于缺乏完整的原子结构而妨碍了对PhoQ信号转导的全面理解。在这项研究中,在实验性交联数据的指导下,通过分子模拟组装了关键跨膜(TM)域的原子模型。在四聚体TM束管腔中涉及Asn202的极性口袋的形成对于域的组装和溶剂化至关重要。此外,发现TM螺旋在周质侧的一致位移调节了细胞质端的旋转,从而通过TM螺旋的剪切和旋转运动的组合来支持化学信号的传导。

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