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噬菌体 Phi6 RNA 聚合酶的模板特异性。

The template specificity of bacteriophage Phi6 RNA polymerase.

机构信息

The Public Health Research Institute, Rutgers Biomedical and Health Sciences, Newark, New Jersey, USA.

出版信息

J Virol. 2013 Sep;87(18):10190-4. doi: 10.1128/JVI.01467-13. Epub 2013 Jul 17.

Abstract

Bacteriophage Φ6 contains three double-stranded RNA (dsRNA) genomic segments, L, M, and S. The RNA is located inside a core particle composed of multiple copies of a major structural protein, an RNA-dependent RNA polymerase, a hexameric NTPase, and an auxiliary protein. The virion RNA polymerase in the core particle transcribes segments M and S in vitro. Segment L is transcribed poorly because its transcript starts with GU instead of GG found on segments S and M. Transcription in vivo is modified by the binding of host protein YajQ to the outside the core particle so that segment L is transcribed well. This mechanism is the determinant of the temporal control of gene expression in Φ6. Mutants of Φ6 have been isolated that are independent of YajQ for transcription of segment L. The mutations are found in the gene of the viral polymerase or the major capsid protein or both. These mutants are capable of transcribing segment L with the GU start or GA or GC. The same is found to be true when YajQ is added to wild-type particles. Minus-strand synthesis has restrictions that are different from that of plus-strand synthesis, and YajQ or mutations to independence do not modify minus-strand synthesis behavior. Purified polymerase P2 is able to transcribe dsRNA, but transcription behavior of segment L by both wild-type and mutant polymerases is different from that seen in capsid structures. Adding YajQ to purified polymerase does not change its transcription specificity.

摘要

Φ6 噬菌体含有三个双链 RNA(dsRNA)基因组片段,L、M 和 S。RNA 位于由多个主要结构蛋白、RNA 依赖性 RNA 聚合酶、六聚体 NTPase 和辅助蛋白组成的核心颗粒内。核心颗粒中的病毒 RNA 聚合酶在体外转录 M 和 S 片段。L 片段转录较差,因为其转录物以 GU 开头,而不是 S 和 M 片段上的 GG。体内转录通过宿主蛋白 YajQ 与核心颗粒外部结合进行修饰,从而使 L 片段转录良好。这种机制是 Φ6 中基因表达时间调控的决定因素。已经分离出不依赖 YajQ 转录 L 片段的 Φ6 突变体。突变发生在病毒聚合酶或主要衣壳蛋白的基因中或两者都发生突变。这些突变体能以 GU 起始转录 L 片段,也能以 GA 或 GC 起始转录。当 YajQ 被添加到野生型颗粒中时,也发现了同样的情况。负链合成的限制与正链合成的限制不同,YajQ 或独立性突变不会改变负链合成行为。纯化的聚合酶 P2 能够转录 dsRNA,但野生型和突变型聚合酶对 L 片段的转录行为与衣壳结构中观察到的不同。向纯化的聚合酶中添加 YajQ 不会改变其转录特异性。

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