Freie Universität Berlin, Department of Physics, Theoretical Molecular Biophysics Group, Arnimallee 14, D-14195 Berlin, Germany.
Freie Universität Berlin, Department of Physics, Theoretical Molecular Biophysics Group, Arnimallee 14, D-14195 Berlin, Germany.
Biochim Biophys Acta Biomembr. 2018 Feb;1860(2):416-427. doi: 10.1016/j.bbamem.2017.11.004. Epub 2017 Nov 9.
SecA is an essential part of the Sec pathway for protein secretion in bacteria. In this pathway, SecA interacts with the N-terminal fragment of the secretory protein - the signal peptide, and couples binding and hydrolysis of adenosine triphosphate with movement of the secretory protein across the SecY protein translocon. How interactions with the signal peptide alter the conformational dynamics and long-distance conformational couplings of SecA is a key open question that we address here with molecular dynamics techniques. Analyses of protein motions indicate that the signal peptide alters SecA dynamics not only at the site where this peptide binds, but also at a nucleotide-binding domain. Hydrogen bond clusters contribute to the long-distance propagation of changes in SecA dynamics.
SecA 是细菌中蛋白质分泌的 Sec 途径的重要组成部分。在该途径中,SecA 与分泌蛋白的 N 端片段 - 信号肽相互作用,并将结合和水解三磷酸腺苷与分泌蛋白穿过 SecY 蛋白转位器的运动偶联起来。信号肽如何改变 SecA 的构象动力学和长程构象偶联是一个关键的开放性问题,我们在这里用分子动力学技术来解决。对蛋白质运动的分析表明,信号肽不仅改变了 SecA 在该肽结合部位的动力学,还改变了核苷酸结合域的动力学。氢键簇有助于 SecA 动力学变化的长程传播。