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首页> 外文期刊>Protein Science: A Publication of the Protein Society >The binding mechanism, multiple binding modes, and allosteric regulation of Staphylococcus aureus Sortase A probed by molecular dynamics simulations
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The binding mechanism, multiple binding modes, and allosteric regulation of Staphylococcus aureus Sortase A probed by molecular dynamics simulations

机译:分子动力学模拟探测金黄色葡萄球菌分选酶A的结合机理,多种结合方式和变构调控

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Sortase enzymes are vitally important for the virulence of gram-positive bacteria as they play a key role in the attachment of surface proteins to the cell wall. These enzymes recognize a specific sorting sequence in proteins destined to be displayed on the surface of the bacteria and catalyze the transpeptidation reaction that links it to a cell wall precursor molecule. Because of their role in establishing pathogenicity, and in light of the recent rise of antibiotic-resistant bacterial strains, sortase enzymes are novel drug targets. Here, we present a study of the prototypical sortase protein Staphylococcus aureus Sortase A (SrtA). Both conventional and accelerated molecular dynamics simulations of S. aureus SrtA in its apo state and when bound to an LPATG sorting signal (SS) were performed. Results support a binding mechanism that may be characterized as conformational selection followed by induced fit. Additionally, the SS was found to adopt multiple metastable states, thus resolving discrepancies between binding conformations in previously reported experimental structures. Finally, correlation analysis reveals that the SS actively affects allosteric pathways throughout the protein that connect the first and the second substrate binding sites, which are proposed to be located on opposing faces of the protein. Overall, these calculations shed new light on the role of dynamics in the binding mechanism and function of sortase enzymes. Published by Wiley-Blackwell.
机译:分选酶对于革兰氏阳性细菌的毒性至关重要,因为它们在表面蛋白与细胞壁的附着中起关键作用。这些酶识别注定要在细菌表面显示的蛋白质中的特定分选序列,并催化将其与细胞壁前体分子连接的转肽反应。由于它们在确定致病性方面的作用,并且鉴于最近出现的抗生素抗药性细菌菌株,分选酶是新型药物靶标。在这里,我们介绍了原型分选酶蛋白金黄色葡萄球菌分选酶A(SrtA)的研究。对金黄色葡萄球菌SrtA在其载脂蛋白状态以及与LPATG分选信号(SS)结合时均进行了常规和加速的分子动力学模拟。结果支持结合机制,其特征可以在于构象选择,然后是诱导拟合。另外,发现SS采用多种亚稳态,从而解决了先前报道的实验结构中结合构象之间的差异。最后,相关性分析表明,SS会主动影响整个蛋白质的变构途径,这些变构途径连接了第一个和第二个底物结合位点,这些位点位于蛋白质的相对面上。总体而言,这些计算为动力学在分选酶的结合机制和功能中的作用提供了新的思路。由Wiley-Blackwell发布。

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