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首页> 外文期刊>Journal of Molecular Biology >Regulation of Shigella Effector Kinase OspG through Modulation of Its Dynamic Properties
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Regulation of Shigella Effector Kinase OspG through Modulation of Its Dynamic Properties

机译:通过调节其动态特性调节Shigella效应激酶OSPG的调节

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摘要

Gram-negative pathogens secrete effector proteins into human cells to modulate normal cellular processes and establish a bacterial replication niche. Shigella and pathogenic Escherichia coli possess homologous effector kinases, OspG and NleH1/2, respectively. Upon translocation, OspG but not NleH binds to ubiquitin and a subset of E2 similar to Ub conjugates, which was shown to activate its kinase activity. Here we show that OspG, having a minimal kinase fold, acquired a novel mechanism of regulation of its activity. Binding of the E2 similar to Ub conjugate to OspG not only stimulates its kinase activity but also increases its optimal temperature for activity to match the human body temperature and stabilizes its labile C-terminal domain. The melting temperature (T-m) of OspG alone is only 31 degrees C, as compared to 41 degrees C to NleH1/2 homologs. In the presence of E2 similar to Ub, the T-m of OspG increases to similar to 42 degrees C, while Ub by itself increases the T-m to 39 degrees C. Moreover, OspG alone displays maximal activity at 26 degrees C, while in the presence of E2 similar to Ub, maximal activity occurs at similar to 42 degrees C. Using NMR and molecular dynamics calculations, we have identified the C-terminal lobe and, in particular, the C-terminal helix, as the key elements responsible for lower thermal stability of OspG as compared to homologous effector kinases. (C) 2018 Elsevier Ltd. All rights reserved.
机译:革兰氏阴性病原体分泌到人细胞中的效应蛋白质以调节正常的细胞过程并建立细菌复制利基。 Shigella和致病性大肠杆菌分别具有同源效应激酶,OSPG和NLEH1 / 2。在易位时,OSPG但不是NLeh与泛素结合,并且类似于UB缀合物的E2的子集,其显示出现激活其激酶活性。在这里,我们表明OSPG具有最小的激酶折叠,获得了一种新的调节机制。 E2类似于UB缀合物的E2与OSPG的结合不仅刺激其激酶活性,而且还增加了其最佳温度以使人体温匹配并稳定其不稳定的C末端结构域。单独OSPG的熔化温度(T-M)仅为31℃,与41℃至NLEH1 / 2同源物相比。在类似于UB的E2的存在下,OSPG的TM增加到42摄氏度,而UB自身增加到39摄氏度。此外,OSPG单独在26摄氏度下显示最大活动,而在存在E2类似于UB,使用NMR和分子动力学计算类似于42摄氏度的最大活动,我们已经识别了C末端叶,特别是C终端螺旋,作为负责较低热稳定性的关键元件与同源效应激酶相比OSPG。 (c)2018年elestvier有限公司保留所有权利。

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