首页> 外文期刊>Journal of Molecular Biology >Cystoviral polymerase complex protein P7 uses its acidic C-terminal tail to regulate the RNA-directed RNA polymerase P2
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Cystoviral polymerase complex protein P7 uses its acidic C-terminal tail to regulate the RNA-directed RNA polymerase P2

机译:细胞病毒聚合酶复合蛋白P7使用其酸性C末端尾巴调节RNA定向的RNA聚合酶P2

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摘要

In bacteriophages of the cystovirus family, the polymerase complex (PX) encodes a 75-kDa RNA-directed RNA polymerase (P2) that transcribes the double-stranded RNA genome. Also a constituent of the PX is the essential protein P7 that, in addition to accelerating PX assembly and facilitating genome packaging, plays a regulatory role in transcription. Deletion of P7 from the PX leads to aberrant plus-strand synthesis suggesting its influence on the transcriptase activity of P2. Here, using solution NMR techniques and the P2 and P7 proteins from cystovirus ψ12, we demonstrate their largely electrostatic interaction in vitro. Chemical shift perturbations on P7 in the presence of P2 suggest that this interaction involves the dynamic C-terminal tail of P7, more specifically an acidic cluster therein. Patterns of chemical shift changes induced on P2 by the P7 C-terminus resemble those seen in the presence of single-stranded RNA suggesting similarities in binding. This association between P2 and P7 reduces the affinity of the former toward template RNA and results in its decreased activity both in de novo RNA synthesis and in extending a short primer. Given the presence of C-terminal acidic tracts on all cystoviral P7 proteins, the electrostatic nature of the P2/P7 interaction is likely conserved within the family and could constitute a mechanism through which P7 regulates transcription in cystoviruses.
机译:在膀胱病毒家族的噬菌体中,聚合酶复合物(PX)编码75 kDa RNA定向的RNA聚合酶(P2),该酶转录双链RNA基因组。 PX的组成部分也是必需的蛋白质P7,它除了加速PX组装和促进基因组包装外,还在转录中起调节作用。从PX中删除P7会导致异常的正链合成,表明其对P2的转录酶活性有影响。在这里,我们使用溶液NMR技术以及来自膀胱病毒ψ12的P2和P7蛋白,证明了它们在体外的大部分静电相互作用。在P2存在下对P7的化学位移扰动表明,这种相互作用涉及P7的动态C末端尾巴,更具体地讲是其中的酸性簇。由P7 C末端在P2上诱导的化学位移变化的模式类似于在单链RNA存在下观察到的模式,表明结合相似。 P2和P7之间的这种结合降低了前者对模板RNA的亲和力,并导致其在从头RNA合成和延伸短引物方面的活性降低。考虑到所有膀胱病毒P7蛋白上均存在C末端酸性区,因此P2 / P7相互作用的静电性质在该家族中可能是保守的,并且可能构成P7调节膀胱病毒中转录的机制。

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