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卷曲螺旋在 YopD 易位子家族中的作用:YopD N 端的预测结构是其完全毒力所必需的,该结构在假结核耶尔森氏菌中独有的。

Coiled-coils in the YopD translocator family: a predicted structure unique to the YopD N-terminus contributes to full virulence of Yersinia pseudotuberculosis.

机构信息

Department of Molecular Biology, Umeå University, SE-901 87 Umeå, Sweden.

出版信息

Infect Genet Evol. 2012 Dec;12(8):1729-42. doi: 10.1016/j.meegid.2012.07.016. Epub 2012 Aug 11.

Abstract

Pathogenic Yersinia all harbor a virulence plasmid-encoded Ysc-Yop T3SS. In this system, translocator function is performed by the hydrophobic proteins YopB and YopD. With the goal to better understand how YopD orchestrates yop-regulatory control, translocon pore formation and Yop effector translocation, we performed an in silico prediction of coiled-coil motifs in YopD and YopD-like sequences from other bacteria. Of interest was a predicted N-terminal coiled-coil that occurred solely in Yersinia YopD sequences. To investigate if this unique feature was biologically relevant, two in cis point mutations were generated with a view to disrupting this putative structure. Both mutants maintained full T3SS function in vitro in terms of environmental control of Yops synthesis and secretion, effector toxin translocation and evasion of phagocytosis and killing by cultured immune cells. However, these same mutants were attenuated for virulence in a murine oral-infection model. The cause of this tardy disease progression is unclear. However, these data indicate that any structural flaw in this element unique to the N-terminus will subtly compromise an aspect of YopD biology. Sub-optimal T3SSs are then formed that are unable to fortify Yersinia against attack by the host innate and adaptive immune response.

摘要

所有致病性耶尔森氏菌都携带有一个毒力质粒编码的 Ysc-Yop T3SS。在这个系统中,疏水性蛋白 YopB 和 YopD 执行转运器功能。为了更好地了解 YopD 如何协调 yop 调控控制、转位孔形成和 Yop 效应子易位,我们对来自其他细菌的 YopD 和 YopD 样序列进行了卷曲螺旋基序的计算机预测。一个预测的 N 端卷曲螺旋结构引起了我们的兴趣,该结构仅存在于耶尔森氏菌 YopD 序列中。为了研究这个独特特征是否具有生物学相关性,我们生成了两个顺式点突变,旨在破坏这个假定的结构。这两个突变体在体外均保持完整的 T3SS 功能,表现在环境控制 Yops 合成和分泌、效应子毒素易位以及逃避培养免疫细胞的吞噬和杀伤方面。然而,在小鼠口服感染模型中,这些相同的突变体的毒力减弱。导致这种迟发性疾病进展的原因尚不清楚。然而,这些数据表明,该独特的 N 端元件的任何结构缺陷都会微妙地影响 YopD 生物学的一个方面。然后形成的亚最佳 T3SS 无法加强耶尔森氏菌抵御宿主先天和适应性免疫反应的攻击。

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