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The Salmonella Type III Secretion System Inner Rod Protein PrgJ Is Partially Folded

机译:沙门氏菌III型分泌系统内杆蛋白PrgJ被部分折叠

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摘要

The type III secretion system (T3SS) is essential in the pathogenesis of many bacteria. The inner rod is important in the assembly of the T3SS needle complex. However, the atomic structure of the inner rod protein is currently unknown. Based on computational methods, others have suggested that the Salmonella inner rod protein PrgJ is highly helical, forming a folded 3 helix structure. Here we show by CD and NMR spectroscopy that the monomeric form of PrgJ lacks a tertiary structure, and the only well-structured part of PrgJ is a short α-helix at the C-terminal region from residues 65–82. Disruption of this helix by glycine or proline mutation resulted in defective assembly of the needle complex, rendering bacteria incapable of secreting effector proteins. Likewise, CD and NMR data for the Shigella inner rod protein MxiI indicate this protein lacks a tertiary structure as well. Our results reveal that the monomeric forms of the T3SS inner rod proteins are partially folded.
机译:III型分泌系统(T3SS)在许多细菌的发病机理中至关重要。内杆在T3SS针头组件的组装中很重要。然而,内杆蛋白的原子结构目前是未知的。根据计算方法,其他人认为沙门氏菌内杆蛋白PrgJ具有高度螺旋性,形成折叠的3螺旋结构。在这里,我们通过CD和NMR光谱表明PrgJ的单体形式缺乏三级结构,而PrgJ唯一结构良好的部分是残基65-82处C端区域的短α螺旋。甘氨酸或脯氨酸突变破坏此螺旋结构会导致针复合物组装不良,致使细菌无法分泌效应蛋白。同样,志贺氏菌内杆蛋白MxiI的CD和NMR数据也表明该蛋白也缺乏三级结构。我们的结果表明,T3SS内杆蛋白的单体形式被部分折叠。

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