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首页> 外文期刊>Virology >In vitro binding of anthrax protective antigen on bacteriophage T4 capsid surface through Hoc-capsid interactions: A strategy for efficient display of large full-length proteins
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In vitro binding of anthrax protective antigen on bacteriophage T4 capsid surface through Hoc-capsid interactions: A strategy for efficient display of large full-length proteins

机译:通过Hoc-衣壳相互作用将炭疽保护性抗原在噬菌体T4衣壳表面上进行体外结合:有效展示大型全长蛋白的策略

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摘要

An in vitro binding system is described to display large full-length proteins on bacteriophage T4 capsid surface at high density. The phage T4 icosahedral capsid features 155 copies of a nonessential highly antigenic outer capsid protein, Hoc, at the center of each major capsid protein hexon. Gene fusions were engineered to express the 83-kDa protective antigen (PA) from Bacillus anthracis fused to the N-terminus of Hoc and the 130-kDa PA-Hoc protein was expressed in Escherichia coli and purified. The purified PA-Hoc was assembled in vitro on hoc(-) phage particles. Binding was specific, stable, and of high affinity. This defined in vitro system allowed manipulation of the copy number of displayed PA and imposed no significant limitation on the size of the displayed antigen. In contrast to in vivo display systems, the in vitro approach allows all the capsid binding sites to be occupied by the 130-kDa PA-Hoc fusion protein. The PA-T4 particles were immunogenic in mice in the absence of an adjuvant, eliciting strong PA-specific antibodies and anthrax lethal toxin neutralizing antibodies. The in vitro display on phage T4 offers a novel platform for potential construction of customized vaccines against anthrax and other infectious diseases. (C) 2005 Elsevier Inc. All rights reserved.
机译:描述了一种体外结合系统,该系统以高密度在噬菌体T4衣壳表面上展示大型全长蛋白质。噬菌体T4二十面体衣壳在每个主要衣壳蛋白六邻体的中心具有155个非必需的高抗原性外衣壳蛋白Hoc。基因融合被改造成表达来自融合到Hoc N端的炭疽芽孢杆菌的83 kDa保护性抗原(PA),并且130 kDa PA-Hoc蛋白在大肠杆菌中表达并纯化。纯化的PA-Hoc在体外组装在hoc(-)噬菌体颗粒上。结合是特异性的,稳定的并且具有高亲和力。该限定的体外系统允许操纵所展示的PA的拷贝数,并且对所展示的抗原的大小没有明显限制。与体内展示系统相反,体外方法允许所有衣壳结合位点被130-kDa PA-Hoc融合蛋白占据。在不存在佐剂的情况下,PA-T4颗粒在小鼠中具有免疫原性,可引发强PA特异性抗体和炭疽致死毒素中和抗体。在噬菌体T4上的体外展示为潜在构建针对炭疽和其他传染病的定制疫苗提供了一个新颖的平台。 (C)2005 Elsevier Inc.保留所有权利。

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