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Wzx flippases exhibiting complex O‐unit preferences require a new model for Wzx–substrate interactions

机译:表现出复杂的O-unit偏好的Wzx翻转菜需要Wzx-底物相互作用的新模型

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摘要

The Wzx flippase is a critical component of the O‐antigen biosynthesis pathway, being responsible for the translocation of oligosaccharide O units across the inner membrane in Gram‐negative bacteria. Recent studies have shown that Wzx has a strong preference for its cognate O unit, but the types of O‐unit structural variance that a given Wzx can accommodate are poorly understood. In this study, we identified two Yersinia pseudotuberculosis Wzx that can distinguish between different terminal dideoxyhexose sugars on a common O‐unit main‐chain, despite both being able to translocate several other structurally‐divergent O units. We also identified other Y. pseudotuberculosis Wzx that can translocate a structurally divergent foreign O unit with high efficiency, and thus exhibit an apparently relaxed substrate preference. It now appears that Wzx substrate preference is more complex than previously suggested, and that not all O‐unit residues are equally important determinants of translocation efficiency. We propose a new “Structure‐Specific Triggering” model in which Wzx translocation proceeds at a low level for a wide variety of substrates, with high‐frequency translocation only being triggered by Wzx interacting with one or more preferred O‐unit structural elements found on its cognate O unit(s).
机译:Wzx翻转酶是O抗原生物合成途径的关键组成部分,负责寡糖O单位在革兰氏阴性细菌中跨内膜的转运。最近的研究表明,Wzx对其同源的O单位具有强烈的偏好,但是对于给定的Wzx可以容纳的O单位结构变异的类型了解甚少。在这项研究中,我们确定了两个假单胞菌假单胞菌Wzx,尽管它们都能够转运其他几个结构上不同的O单位,但它们可以区分同一O单元主链上的不同末端双脱氧己糖。我们还确定了其他Y.pseudotuberculosis Wzx,它们可以高效转移结构上不同的外源O单元,从而表现出明显的底物偏好。现在看来,Wzx底物的偏好比以前提出的要复杂得多,而且并非所有O单元残基都是转运效率的同样重要的决定因素。我们提出了一种新的“特定结构触发”模型,其中,Wzx易位对于多种底物进行的水平较低,而高频易位仅由Wzx与一个或多个首选的O单元结构元素相互作用而触发其同类的O单元。

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