首页> 美国卫生研究院文献>Elsevier Public Health Emergency Collection >Phage P22 tailspike protein: crystal structure of the head-binding domain at 2.3 Å fully refined structure of the endorhamnosidase at 1.56 Å resolution and the molecular basis of O-antigen recognition and cleavage
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Phage P22 tailspike protein: crystal structure of the head-binding domain at 2.3 Å fully refined structure of the endorhamnosidase at 1.56 Å resolution and the molecular basis of O-antigen recognition and cleavage

机译:噬菌体P22尾钉蛋白:头部结合结构域的晶体结构为2.3Å内啡肽酶的完全精制结构的分辨率为1.56Å以及O抗原识别和切割的分子基础

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摘要

The tailspike protein of phage P22 is a viral adhesion protein with both receptor binding and destroying activities. It recognises the O-antigenic repeating units of cell surface lipopolysaccharide of serogroup A, B and D1 as receptor, but also inactivates its receptor by endoglycosidase (endorhamnosidase) activity. In the final step of bacteriophage P22 assembly six homotrimeric tailspike molecules are non-covalently attached to the DNA injection apparatus, mediated by their N-terminal, head-binding domains. We report the crystal structure of the head-binding domain of P22 tailspike protein at 2.3 Å resolution, solved with a recombinant telluromethionine derivative and non-crystallographic symmetry averaging. The trimeric dome-like structure is formed by two perpendicular β-sheets of five and three strands, respectively in each subunit and caps a three-helix bundle observed in the structure of the C-terminal receptor binding and cleaving fragment, reported here after full refinement at 1.56 Å resolution. In the central part of the receptor binding fragment, three parallel β-helices of 13 complete turns are associated side-by-side, while the three polypeptide strands merge into a single domain towards their C termini, with close interdigitation at the junction to the β-helix part. Complex structures with receptor fragments from and determined at 1.8 Å resolution are described in detail. Insertions into the β-helix form the O-antigen binding groove, which also harbours the active site residues Asp392, Asp395 and Glu359. In the intact structure of the tailspike protein, head-binding and receptor-binding parts are probably linked by a flexible hinge whose function may be either to deal with shearing forces on the exposed, 150 Å long tailspikes or to allow them to bend during the infection process.
机译:噬菌体P22的尾钉蛋白是一种病毒粘附蛋白,具有受体结合和破坏活性。它识别血清型A,B和D1的细胞表面脂多糖的O抗原重复单元为受体,但也通过糖苷内切酶(内啡肽酶)活性使其受体失活。在噬菌体P22装配的最后步骤中,六个同源三聚体的尾钉分子非共价连接至DNA注射装置,由其N端,头部结合结构域介导。我们报告了2.3Å分辨率的P22尾钉蛋白的头部结合结构域的晶体结构,用重组碲甲硫氨酸衍生物和非晶体对称平均法求解。三聚体的圆顶状结构是由两个垂直的β-折叠形成的,分别在每个亚基中形成5条和3条链,并在C端受体结合和裂解片段的结构中观察到了一个三螺旋束,在完整报道后在此报道分辨率为1.56Å。在受体结合片段的中央部分,三个完整的13个完整匝的平行β螺旋并排相连,而这三个多肽链则朝着其C末端融合成单个结构域,并在与C末端的连接处紧密交指。 β-螺旋部分。详细描述了具有1.8Å分辨率的受体片段的复杂结构。插入β-螺旋形成O-抗原结合槽,该槽还包含活性位点残基Asp392,Asp395和Glu359。在尾钉蛋白的完整结构中,头部结合和受体结合部分可能通过柔性铰链连接,该铰链的功能可能是处理暴露在外的150Å长尾钉上的剪切力,或者使其在弯曲过程中弯曲。感染过程。

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