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首页> 外文期刊>Biophysical Journal >Weise, C.F.a , Login, F.H.b , Ho, O.a , Gr?bner, G.a , Wolf-Watz, H.b , Wolf-Watz, M.a Negatively charged lipid membranes promote a disorder-order transition in the Yersinia YscU protein
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Weise, C.F.a , Login, F.H.b , Ho, O.a , Gr?bner, G.a , Wolf-Watz, H.b , Wolf-Watz, M.a Negatively charged lipid membranes promote a disorder-order transition in the Yersinia YscU protein

机译:Weise,C.F.a,Login,F.H.b,Ho,O.a,Gr?bner,G.a,Wolf-Watz,H.b,Wolf-Watz,M.a带负电荷的脂质膜促进耶尔森氏菌YscU蛋白的无序转变

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摘要

The inner membrane of Gram-negative bacteria is negatively charged, rendering positively charged cytoplasmic proteins in close proximity likely candidates for protein-membrane interactions. YscU is a Yersinia pseudotuberculosis type III secretion system protein crucial for bacterial pathogenesis. The protein contains a highly conserved positively charged linker sequence that separates membrane-spanning and cytoplasmic (YscUC) domains. Although disordered in solution, inspection of the primary sequence of the linker reveals that positively charged residues are separated with a typical helical periodicity. Here, we demonstrate that the linker sequence of YscU undergoes a largely electrostatically driven coil-to-helix transition upon binding to negatively charged membrane interfaces. Using membrane-mimicking sodium dodecyl sulfate micelles, an NMR derived structural model reveals the induction of three helical segments in the linker. The overall linker placement in sodium dodecyl sulfate micelles was identified by NMR experiments including paramagnetic relaxation enhancements. Partitioning of individual residues agrees with their hydrophobicity and supports an interfacial positioning of the helices. Replacement of positively charged linker residues with alanine resulted in YscUC variants displaying attenuated membrane-binding affinities, suggesting that the membrane interaction depends on positive charges within the linker. In vivo experiments with bacteria expressing these YscU replacements resulted in phenotypes displaying significantly reduced effector protein secretion levels. Taken together, our data identify a previously unknown membrane-interacting surface of YscUC that, when perturbed by mutations, disrupts the function of the pathogenic machinery in Yersinia.
机译:革兰氏阴性细菌的内膜带负电,使带正电的细胞质蛋白非常接近,可能成为蛋白膜相互作用的候选物。 YscU是细菌致病性至关重要的耶尔森氏菌(Yersinia)伪结核III型分泌系统蛋白。该蛋白质包含一个高度保守的带正电的接头序列,该序列将跨膜和胞质(YscUC)域分开。尽管在溶液中无序,但是对接头的一级序列的检查显示带正电的残基以典型的螺旋周期性分开。在这里,我们证明了YscU的接头序列在与带负电的膜界面结合时会经历很大程度上由静电驱动的线圈向螺旋过渡。使用膜模拟十二烷基硫酸钠胶束,NMR衍生的结构模型揭示了接头中三个螺旋段的诱导。通过包含顺磁弛豫增强的NMR实验确定了十二烷基硫酸钠胶束中整个接头的位置。单个残基的分配与其疏水性相符,并支持螺旋的界面定位。用丙氨酸替换带正电荷的接头残基会导致YscUC变体显示减弱的膜结合亲和力,这表明膜相互作用取决于接头内的正电荷。表达这些YscU替代的细菌的体内实验导致表现出显着降低的效应蛋白分泌水平的表型。综上所述,我们的数据确定了以前未知的YscUC膜相互作用表面,当受到突变干扰时,该表面会破坏耶尔森菌的致病机制。

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