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首页> 外文期刊>Journal of Molecular Biology >High Resolution Structure of BipD: An Invasion Protein Associated with the Type III Secretion System of Burkholderia Pseudomallei.
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High Resolution Structure of BipD: An Invasion Protein Associated with the Type III Secretion System of Burkholderia Pseudomallei.

机译:BipD的高分辨率结构:与Burkholderia Pseudomallei的III型分泌系统有关的一种入侵蛋白。

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摘要

Burkoldheria pseudomallei is a Gram-negative bacterium that possesses a protein secretion system similar to those found in Salmonella and Shigella. Recent work has indicated that the protein encoded by the BipD gene of B. pseudomallei is an important secreted virulence factor. BipD is similar in sequence to IpaD from Shigella and SipD from Salmonella and is therefore likely to be a translocator protein in the type-III secretion system of B. pseudomallei. The crystal structure of BipD has been solved at a resolution of 2.1 A revealing the detailed tertiary fold of the molecule. The overall structure is appreciably extended and consists of a bundle of antiparallel alpha-helical segments with two small beta-sheet regions. The longest helices of the molecule form a four-helix bundle and most of the remaining secondary structure elements (three helices and two three-stranded beta-sheets) are formed by the region linking the last two helices of the four-helix bundle. The structure suggests that the biologically active form of the molecule may be a dimer formed by contacts involving the C-terminal alpha-helix, which is the most strongly conserved part of the protein. Comparison of the structure of BipD with immunological and other data for IpaD indicates that the C-terminal alpha-helix is also involved in contacts with other proteins that form the translocon.
机译:Burkoldheria pseudomallei是一种革兰氏阴性细菌,其蛋白质分泌系统与沙门氏菌和志贺氏菌相似。最近的工作表明,由假疟原虫的BipD基因编码的蛋白质是重要的分泌毒力因子。 BipD的序列与志贺氏菌的IpaD和沙门氏菌的SipD相似,因此可能是假苹果芽孢杆菌III型分泌系统中的易位蛋白。 BipD的晶体结构已经以2.1 A的分辨率解析,揭示了该分子的详细三级折叠。整体结构显着扩展,由一束反平行的α-螺旋片段和两个小的β-折叠区域组成。分子的最长螺旋形成四螺旋束,其余大部分二级结构元素(三个螺旋和两个三链β-折叠)由连接四螺旋束的最后两个螺旋的区域形成。该结构表明该分子的生物学活性形式可能是由涉及C端α螺旋的接触形成的二聚体,该末端是蛋白质最保守的部分。 BipD的结构与IpaD的免疫学数据和其他数据的比较表明,C末端的α-螺旋也参与了与其他蛋白的接触,这些蛋白形成了转位子。

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