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金黄色葡萄球菌分选酶A转肽酶。钙通过改变活性位点环的流动性和结构来促进分选信号结合。

Staphylococcus aureus Sortase A transpeptidase. Calcium promotes sorting signal binding by altering the mobility and structure of an active site loop.

作者信息

Naik Mandar T, Suree Nuttee, Ilangovan Udayar, Liew Chu Kong, Thieu William, Campbell Dean O, Clemens Jeremy J, Jung Michael E, Clubb Robert T

机构信息

Department of Chemistry & Biochemistry, University of California, Los Angeles, California 90095-1570, USA.

出版信息

J Biol Chem. 2006 Jan 20;281(3):1817-26. doi: 10.1074/jbc.M506123200. Epub 2005 Nov 3.

Abstract

Many virulence factors in gram-positive bacteria are covalently anchored to the cell-wall peptidoglycan by sortase enzymes, a group of widely distributed cysteine transpeptidases. The Staphylococcus aureus Sortase A protein (SrtA) is the archetypal member of the Sortase family and is activated by Ca2+, an adaptation that may facilitate host colonization as elevated concentrations of this ion are encountered in human tissue. Here we show that a single Ca2+ ion bound to an ordered pocket on SrtA allosterically activates catalysis by modulating both the structure and dynamics of a large active site loop. Detailed nitrogen-15 relaxation measurements indicate that Ca2+ may facilitate the adaptive recognition of the substrate by inducing slow micro- to millisecond time-scale dynamics in the active site. Interestingly, relaxation compensated Carr-Purcell-Meiboom-Gill experiments suggest that the time scale of these motions is directly correlated with ion binding. The results of site-directed mutagenesis indicate that this motional coupling is mediated by the side chain of Glu-171, which is positioned within the beta6/beta7 loop and shown to contribute to Ca2+ binding. The available structural and dynamics data are compatible with a loop closure model of Ca2+ activation, in which the beta6/beta7 loop fluctuates between a binding competent closed form that is stabilized by Ca2+, and an open, highly flexible state that removes key substrate contacting residues from the active site.

摘要

革兰氏阳性菌中的许多毒力因子通过分选酶共价锚定在细胞壁肽聚糖上,分选酶是一类广泛分布的半胱氨酸转肽酶。金黄色葡萄球菌分选酶A蛋白(SrtA)是分选酶家族的典型成员,由Ca2+激活,这种适应性变化可能有助于在人体组织中遇到高浓度该离子时实现宿主定殖。我们在此表明,与SrtA上一个有序口袋结合的单个Ca2+离子通过调节一个大的活性位点环的结构和动力学来变构激活催化作用。详细的氮-15弛豫测量表明,Ca2+可能通过在活性位点诱导微秒到毫秒时间尺度的缓慢动力学来促进对底物的适应性识别。有趣的是,弛豫补偿的Carr-Purcell-Meiboom-Gill实验表明,这些运动的时间尺度与离子结合直接相关。定点诱变结果表明,这种运动偶联由位于β6/β7环内且显示有助于Ca2+结合的Glu-171侧链介导。现有的结构和动力学数据与Ca2+激活的环闭合模型相符,在该模型中,β6/β7环在由Ca2+稳定的具有结合能力的闭合形式和一种开放的、高度灵活的状态之间波动,后者将关键的底物接触残基从活性位点移除。

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