Dissecting the fine details of assembly of a T=3 phage capsid

P. Stockley, A. Ashcroft, S. Francese, G. Thompson, N. Ranson, A. Smith, S. Homans, N. Stonehouse
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引用次数: 11

Abstract

The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway for the formation of a T = 3 quasi-equivalent capsid. For MS2, the assembly reaction can be probed in vitro using acid disassembled coat protein subunits and a short (19 nt) RNA stem-loop that acts as the translational operator of the replicase gene and leads to sequence-specific sequestration and packaging of the cognate phage RNA in vivo. Reassembly reactions can be initiated by mixing these components at neutral pH. The molecular basis of the sequence-specific RNA–protein interaction is now well understood. Recent NMR studies on the protein demonstrate extensive mobility in the loops of the polypeptide that alter their conformations to form the quasi-equivalent conformers of the final capsid. It seems reasonable to assume that RNA binding results in reduction of this flexibility. However, mass spectrometry suggests that these RNA–protein complexes may only provide one type of quasi-equivalent capsid bui...
剖析T=3噬菌体衣壳组装的细节
RNA噬菌体代表了理想的模型系统,在其中探索T = 3准等效衣壳形成的详细组装途径。对于MS2,可以利用酸分解的外壳蛋白亚基和短(19 nt)的RNA茎环在体外探测组装反应,该茎环作为复制酶基因的翻译操作符,在体内导致同源噬菌体RNA的序列特异性隔离和包装。重组反应可以通过在中性ph下混合这些组分来启动。序列特异性rna -蛋白相互作用的分子基础现在已经很好地理解了。最近对蛋白质的核磁共振研究表明,多肽的环具有广泛的流动性,改变了它们的构象,形成了最终衣壳的准等效构象。假设RNA结合导致这种灵活性的降低似乎是合理的。然而,质谱分析表明,这些rna -蛋白复合物可能只提供一种准等效衣壳结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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