首页> 外文期刊>Journal of Molecular Biology >In VITRO ASSEMBLY of the oX174 procapsid from external scaffolding protein oligomers and early pentameric assembly intermediates.
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In VITRO ASSEMBLY of the oX174 procapsid from external scaffolding protein oligomers and early pentameric assembly intermediates.

机译:oX174衣壳的体外组装来自外部支架蛋白低聚物和早期五聚体组装中间体。

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Bacteriophage oX174 morphogenesis requires two scaffolding proteins: an internal species, similar to those employed in other viral systems, and an external species, which is more typically associated with satellite viruses. The current model of oX174 assembly is based on structural and in vivo data. During morphogenesis, 240 copies of the external scaffolding protein mediate the association of 12 pentameric particles into procapsids. The hypothesized pentameric intermediate, the 12S particle, contains 16 proteins: 5 copies each of the coat, spike and internal scaffolding proteins and 1 copy of the DNA pilot protein. Assembly naive 12S particles and external scaffolding oligomers, most likely tetramers, formed procapsid-like particles in vitro, suggesting that the 12S particle is a bona fide assembly intermediate and validating the current model of procapsid morphogenesis. The in vitro system required a crowding agent, was influenced by the ratio of the reactants and was most likely driven by hydrophobic forces. While the system reported here shared some characteristics with other in vitro internal scaffolding protein-mediated systems, it displayed unique features. These features most likely reflect external scaffolding protein-mediated morphogenesis and the oX174 procapsid structure, in which external scaffolding-scaffolding protein interactions, as opposed to coat-coat protein interactions between pentamers, constitute the primary lattice-forming contacts.
机译:噬菌体oX174的形态发生需要两个支架蛋白:一个内部物种(与其他病毒系统中使用的相似)和一个外部物种(通常与卫星病毒相关)。 oX174组装的当前模型基于结构和体内数据。在形态发生过程中,外部脚手架蛋白的240个拷贝介导12个五聚体颗粒缔合到衣壳中。假设的五聚体中间体12S颗粒包含16种蛋白质:外壳,刺突和内部支架蛋白质各5份,DNA引导蛋白质1份。装配天真12S粒子和外部脚手架低聚物(最可能是四聚体)在体外形成了前衣壳样颗粒,这表明12S颗粒是真正的装配中间体,并验证了前衣壳形态发生的当前模型。体外系统需要拥挤剂,受反应物比例的影响,最有可能是由疏水力驱动的。虽然此处报告的系统与其他体外内部脚手架蛋白介导的系统具有某些特征,但它显示出独特的功能。这些特征很可能反映了外部支架蛋白介导的形态发生和oX174衣壳结构,其中外部支架与支架蛋白的相互作用与五聚体之间的涂层蛋白相互作用相反,构成了主要的晶格形成接触。

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