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首页> 外文期刊>Journal of structural and functional genomics >Solution NMR structure of CD1104B from pathogenic Clostridium difficile reveals a distinct α-helical architecture and provides first structural representative of protein domain family PF14203
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Solution NMR structure of CD1104B from pathogenic Clostridium difficile reveals a distinct α-helical architecture and provides first structural representative of protein domain family PF14203

机译:致病性艰难梭菌CD1104B的溶液NMR结构揭示了独特的α螺旋结构,并提供了蛋白结构域家族PF14203的第一个结构代表

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摘要

A high-quality structure of the 68-residue protein CD1104B from Clostridium difficile strain 630 exhibits a distinct all α-helical fold. The structure presented here is the first representative of bacterial protein domain family PF14203 (currently 180 members) of unknown function (DUF4319) and reveals that the side-chains of the only two strictly conserved residues (Glu 8 and Lys 48) form a salt bridge. Moreover, these two residues are located in the vicinity of the largest surface cleft which is predicted to contribute to a surface area involved in protein–protein interactions. This, along with its coding in transposon CTn4, suggests that CD1104B (and very likely all members of Pfam 14203) functions by interacting with other proteins required for the transfer of transposons between different bacterial species.
机译:来自艰难梭菌菌株630的68个残基蛋白质CD1104B的高质量结构表现出明显的所有α-螺旋折叠。此处介绍的结构是功能未知的细菌蛋白质结构域家族PF14203(当前为180个成员)(DUF4319)的第一个代表,它揭示了仅两个严格保守的残基(Glu 8和Lys 48)的侧链形成了盐桥。此外,这两个残基位于最大的表面裂隙附近,预计将有助于参与蛋白质-蛋白质相互作用的表面积。这与其在转座子CTn4中的编码一起表明,CD1104B(很可能是Pfam 14203的所有成员)通过与其他转座子在不同细菌物种之间转移所需的其他蛋白质相互作用而起作用。

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