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Identification of an Interacting Coat-External Scaffolding Protein Domain Required for both the Initiation of φX174 Procapsid Morphogenesis and the Completion of DNA Packaging

机译:相互作用的外套外部支架蛋白域的鉴定所需的φX174衣壳形态发生的起始和DNA包装的完成。

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摘要

The φX174 external scaffolding protein D mediates the assembly of coat protein pentamers into procapsids. There are four external scaffolding subunits per coat protein. Organized as pairs of asymmetric dimers, the arrangement is unrelated to quasi-equivalence. The external scaffolding protein contains seven α-helices. The protein's core, α-helices 2 to 6, mediates the vast majority of intra- and interdimer contacts and is strongly conserved in all Microviridae (canonical members are φX174, G4, and α3) external scaffolding proteins. On the other hand, the primary sequences of the first α-helices have diverged. The results of previous studies with α3/φX174 chimeric external scaffolding proteins suggest that α-helix 1 may act as a substrate specificity domain, mediating the initial coat scaffolding protein recognition in a species-specific manner. However, the low sequence conservation between the two phages impeded genetic analyses. In an effort to elucidate a more mechanistic model, chimeric external scaffolding proteins were constructed between the more closely related phages G4 and φX174. The results of biochemical analyses indicate that the chimeric external scaffolding protein inhibits two morphogenetic steps: the initiation of procapsid formation and DNA packaging. φX174 mutants that can efficiently utilize the chimeric protein were isolated and characterized. The substitutions appear to suppress both morphogenetic defects and are located in threefold-related coat protein sequences that most likely form the pores in the viral procapsid. These results identify coat-external scaffolding domains needed to initiate procapsid formation and provide more evidence, albeit indirect, that the pores are the site of DNA entry during the packaging reaction.
机译:φX174外部支架蛋白D介导外壳蛋白五聚体组装成衣壳。每个外壳蛋白有四个外部支架亚基。排列为成对的不对称二聚体,与准等价性无关。外部支架蛋白包含七个α-螺旋。该蛋白的核心是2到6螺旋,介导了大部分二聚体和二聚体接触,并且在所有Microviridae(规范成员为φX174,G4和α3)外部支架蛋白中都高度保守。另一方面,第一α-螺旋的主要序列发散了。先前对α3/φX174嵌合外部支架蛋白的研究结果表明,α-螺旋1可能充当底物特异性域,以物种特异性方式介导了最初的涂层支架蛋白识别。然而,两个噬菌体之间的低序列保守性阻碍了遗传分析。为了阐明一个更加机械的模型,在更紧密相关的噬菌体G4和φX174之间构建了嵌合的外部支架蛋白。生化分析的结果表明,嵌合的外部支架蛋白抑制了两个形态发生步骤:衣壳形成的起始和DNA包装。分离并鉴定了可以有效利用嵌合蛋白的φX174突变体。取代似乎抑制了两个形态发生缺陷,并且位于三倍相关的外壳蛋白序列中,最可能在病毒前壳体中形成孔。这些结果确定了启动衣壳形成所需的外壳外部支架结构域,并且尽管间接地提供了更多证据,即孔是包装反应期间DNA进入的位点。

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