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细菌磷脂酶A(PLA)外切酶U的底物-辅因子协同相互作用及膜定位

Cooperative Substrate-Cofactor Interactions and Membrane Localization of the Bacterial Phospholipase A (PLA) Enzyme, ExoU.

作者信息

Tessmer Maxx H, Anderson David M, Buchaklian Adam, Frank Dara W, Feix Jimmy B

机构信息

Department of Microbiology and Molecular Genetics; Center for Infectious Disease Research.

Department of Biophysics.

出版信息

J Biol Chem. 2017 Feb 24;292(8):3411-3419. doi: 10.1074/jbc.M116.760074. Epub 2017 Jan 9.

Abstract

The ExoU type III secretion enzyme is a potent phospholipase A secreted by the Gram-negative opportunistic pathogen, Activation of phospholipase activity is induced by protein-protein interactions with ubiquitin in the cytosol of a targeted eukaryotic cell, leading to destruction of host cell membranes. Previous work in our laboratory suggested that conformational changes within a C-terminal domain of the toxin might be involved in the activation mechanism. In this study, we use site-directed spin-labeling electron paramagnetic resonance spectroscopy to investigate conformational changes in a C-terminal four-helical bundle region of ExoU as it interacts with lipid substrates and ubiquitin, and to examine the localization of this domain with respect to the lipid bilayer. In the absence of ubiquitin or substrate liposomes, the overall structure of the C-terminal domain is in good agreement with crystallographic models derived from ExoU in complex with its chaperone, SpcU. Significant conformational changes are observed throughout the domain in the presence of ubiquitin and liposomes combined that are not observed with either liposomes or ubiquitin alone. In the presence of ubiquitin, two interhelical loops of the C-terminal four-helix bundle appear to penetrate the membrane bilayer, stabilizing ExoU-membrane association. Thus, ubiquitin and the substrate lipid bilayer act synergistically to induce a conformational rearrangement in the C-terminal domain of ExoU.

摘要

ExoU III型分泌酶是一种由革兰氏阴性机会致病菌分泌的强效磷脂酶A。磷脂酶活性的激活是由与靶向真核细胞胞质溶胶中的泛素进行蛋白质-蛋白质相互作用诱导的,导致宿主细胞膜的破坏。我们实验室之前的工作表明,毒素C端结构域内的构象变化可能参与激活机制。在本研究中,我们使用定点自旋标记电子顺磁共振波谱来研究ExoU的C端四螺旋束区域与脂质底物和泛素相互作用时的构象变化,并检查该结构域相对于脂质双层的定位。在没有泛素或底物脂质体的情况下,C端结构域的整体结构与从ExoU与其伴侣SpcU复合物衍生的晶体学模型高度一致。在同时存在泛素和脂质体的情况下,整个结构域都观察到了显著的构象变化,而单独存在脂质体或泛素时则未观察到这种变化。在存在泛素的情况下,C端四螺旋束的两个螺旋间环似乎穿透了膜双层,稳定了ExoU与膜的结合。因此,泛素和底物脂质双层协同作用,诱导ExoU C端结构域的构象重排。

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