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Biochemical and structural studies reveal differences and commonalities among cap-snatching endonucleases from segmented negative-strand RNA viruses

机译:生化和结构研究表明分段负链RNA病毒的帽式捕捉核酸内切酶之间存在差异和共性

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摘要

Viruses rely on many host cell processes, including the cellular transcription machinery. Segmented negative-strand RNA viruses (sNSV) in particular cannot synthesize the 5′-cap structure for their mRNA but cleave off cellular caps and use the resulting oligonucleotides as primers for their transcription. This cap-snatching mechanism, involving a viral cap-binding site and RNA endonuclease, is both virus-specific and essential for viral proliferation and therefore represents an attractive drug target. Here, we present biochemical and structural results on the putative cap-snatching endonuclease of Crimean–Congo hemorrhagic fever virus (CCHFV), a highly pathogenic bunyavirus belonging to the Nairoviridae family, and of two additional nairoviruses, Erve virus (EREV) and Nairobi sheep disease virus (NSDV). Our findings are presented in the context of other cap-snatching endonucleases, such as the enzymatically active endonuclease from Rift Valley fever virus (RVFV), from Arenaviridae and Bunyavirales, belonging to the His− and His+ endonucleases, respectively, according to the absence or presence of a metal ion–coordinating histidine in the active site. Mutational and metal-binding experiments revealed the presence of only acidic metal-coordinating residues in the active site of the CCHFV domain and a unique active-site conformation that was intermediate between those of His+ and His− endonucleases. On the basis of small-angle X-ray scattering (SAXS) and homology modeling results, we propose a protein topology for the CCHFV domain that, despite its larger size, has a structure overall similar to those of related endonucleases. These results suggest structural and functional conservation of the cap-snatching mechanism among sNSVs.
机译:病毒依赖于许多宿主细胞过程,包括细胞转录机制。分段负链RNA病毒(sNSV)特别不能合成其mRNA的5'-帽结构,但会切下细胞帽并使用所得的寡核苷酸作为其转录的引物。这种涉及病毒帽结合位点和RNA核酸内切酶的抢帽机制既具有病毒特异性,又是病毒增殖所必需的,因此代表了有吸引力的药物靶标。在这里,我们介绍了克里米亚–刚果出血热病毒(CCHFV)(属于内罗病毒科的一种高致病性布尼亚病毒)以及另外两种内罗病毒(欧文病毒(EREV)和内罗毕绵羊)的假定的抢帽内切核酸酶的生化和结构性结果。疾病病毒(NSDV)。我们的发现是在其他捕获帽的内切核酸酶的背景下提出的,例如根据是否存在或不存在,分别来自雷夫谷热病毒(RVFV),来自沙雷亚病毒科和Bunyavirales的酶活性内切核酸酶,分别属于His-和His +内切核酸酶。在活性位点存在金属离子配位组氨酸。突变和金属结合实验表明,在CCHFV域的活性位点中仅存在酸性金属配位残基,并且其独特的活性位点构象介于His +和His-核酸内切酶之间。基于小角度X射线散射(SAXS)和同源性建模结果,我们提出了CCHFV域的蛋白质拓扑结构,尽管其尺寸较大,但其结构总体上与相关核酸内切酶相似。这些结果表明在sNSVs之间的抢夺机制的结构和功能的保留。

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