首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Phage display of intact domains at high copy number: a system based on SOC the small outer capsid protein of bacteriophage T4.
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Phage display of intact domains at high copy number: a system based on SOC the small outer capsid protein of bacteriophage T4.

机译:高拷贝数完整结构域的噬菌体展示:基于SOC(噬菌体T4的小外衣壳蛋白)的系统。

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摘要

Peptides fused to the coat proteins of filamentous phages have found widespread applications in antigen display, the construction of antibody libraries, and biopanning. However, such systems are limited in terms of the size and number of the peptides that may be incorporated without compromising the fusion proteins' capacity to self-assemble. We describe here a system in which the molecules to be displayed are bound to pre-assembled polymers. The polymers are T4 capsids and polyheads (tubular capsid variants) and the display molecules are derivatives of the dispensable capsid protein SOC. In one implementation, SOC and its fusion derivatives are expressed at high levels in Escherichia coli, purified in high yield, and then bound in vitro to separately isolated polyheads. In the other, a positive selection vector forces integration of the modified soc gene into a soc-deleted T4 genome, leading to in vivo binding of the display protein to progeny virions. The system is demonstrated as applied to C-terminal fusions to SOC of (1) a tetrapeptide; (2) the 43-residue V3 loop domain of gp120, the human immunodeficiency virus type-1 (HIV-1) envelope glycoprotein; and (3) poliovirus VP1 capsid protein (312 residues). SOC-V3 displaying phage were highly antigenic in mice and produced antibodies reactive with native gp120. That the fusion protein binds correctly to the surface lattice was attested in averaged electron micrographs of polyheads. The SOC display system is capable of presenting up to approximately 10(3) copies per capsid and > 10(4) copies per polyhead of V3-sized domains. Phage displaying SOC-VP1 were isolated from a 1:10(6) mixture by two cycles of a simple biopanning procedure, indicating that proteins of at least 35 kDa may be accommodated.
机译:融合到丝状噬菌体外壳蛋白上的肽已在抗原展示,抗体文库的构建和生物淘选中得到广泛应用。然而,这样的系统在可掺入的肽的大小和数量方面受到限制,而不会损害融合蛋白的自组装能力。我们在这里描述了一种系统,其中要显示的分子与预组装的聚合物结合。聚合物是T4衣壳和多头(管状衣壳变体),展示分子是可分配的衣壳蛋白SOC的衍生物。在一种实施方式中,SOC及其融合衍生物在大肠杆菌中高水平表达,以高产率纯化,然后在体外结合至单独分离的多头。另一方面,正选择载体迫使修饰的soc基因整合到soc缺失的T4基因组中,导致展示蛋白与子代病毒体在体内结合。该系统被证明可用于(1)四肽SOC的C端融合。 (2)gp120的43个残基的V3环结构域,即人免疫缺陷病毒1型(HIV-1)包膜糖蛋白; (3)脊髓灰质炎病毒VP1衣壳蛋白(312个残基)。展示噬菌体的SOC-V3在小鼠中具有高度抗原性,并产生与天然gp120反应的抗体。在多头的平均电子显微照片中证明了融合蛋白正确结合到表面晶格。 SOC显示系统每个V3大小域的衣壳最多可以显示大约10(3)个副本,每个多头显示最多10(4)个副本。通过两个简单的生物淘选过程周期从1:10(6)混合物中分离出显示SOC-VP1的噬菌体,表明可以容纳至少35 kDa的蛋白质。

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