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首页> 外文期刊>Biochemical and Biophysical Research Communications >Identification of critical residues in nervous necrosis virus B2 for dsRNA-binding and RNAi-inhibiting activity through by bioinformatic analysis and mutagenesis.
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Identification of critical residues in nervous necrosis virus B2 for dsRNA-binding and RNAi-inhibiting activity through by bioinformatic analysis and mutagenesis.

机译:通过生物信息学分析和诱变鉴定神经坏死病毒B2中对于dsRNA结合和RNAi抑制活性的关键残基。

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摘要

It is known that the non-structural B2 protein of nervous necrosis virus (NNV) plays an important role in viral replication and can inhibit the RNA interference system of the host cell. Moreover, the mechanism of NNV B2 protein to inhibit RNAi is by sequestration and protection of double strand (ds) RNA. In the flock house virus (FHV), a model alphanodavirus, the structural and mutational analysis of B2 identified that the positively charged Arg54 of the alpha2 helix mediated the dsRNA-binding activity. According to the betanodavirus B2 protein alignment and modeling results, the amino acid sequences and the predicted structure of betanodavirus B2 are different from alphanodaviruses. It was suggested that the four Arg residues of alpha3 helix between amino residues 52-60 of B2 may be involved in dsRNA-binding activity. Thus, this study replaced these four Arg residues with Gln at position 52 (R52Q), 53 (R53Q), 59 (R59Q), and 60 (R60Q) by site-directed mutagenesis method. The dsRNA-binding assays of these B2 mutants demonstrated that mB2(R53Q) and mB2(R60Q) mutants are dsRNA-binding defective. Moreover, we have found mB2(R53Q) and mB2(R60Q) could not antagonize RNAi by using HeLa cell as an RNAi inhibition model. These results suggested that Arg53 and Arg60 of betanodavirus B2 protein may be similar to Arg54 of alphanodavirus FHV B2 protein and are critical for dsRNA binding and RNAi-inhibiting. This study may serve as an example where bioinformatic analysis of related viral genomes may lead to meaningful structural and functional clues for certain viral proteins.
机译:众所周知,神经坏死病毒(NNV)的非结构性B2蛋白在病毒复制中起着重要作用,并且可以抑制宿主细胞的RNA干扰系统。此外,NNV B2蛋白抑制RNAi的机制是通过螯合和保护双链(ds)RNA。在禽流感病毒(FHV)(一种模型阿尔法病毒)中,B2的结构和突变分析表明,α2螺旋带正电荷的Arg54介导了dsRNA结合活性。根据betanodavirus B2蛋白的比对和建模结果,betanodavirus B2的氨基酸序列和预测结构与alphanodaviruses不同。提示B2的氨基残基52-60之间的α3螺旋的四个Arg残基可能与dsRNA结合活性有关。因此,本研究通过定点诱变方法用位置52(R52Q),53(R53Q),59(R59Q)和60(R60Q)处的Gln取代了这四个Arg残基。这些B2突变体的dsRNA结合测定表明,mB2(R53Q)和mB2(R60Q)突变体是dsRNA结合缺陷型。此外,我们已经发现通过使用HeLa细胞作为RNAi抑制模型,mB2(R53Q)和mB2(R60Q)不能拮抗RNAi。这些结果表明,兽疫病毒B2蛋白的Arg53和Arg60可能与αnodavirusFHV B2蛋白的Arg54相似,并且对于dsRNA结合和RNAi抑制至关重要。这项研究可以作为一个实例,其中相关病毒基因组的生物信息学分析可能会为某些病毒蛋白带来有意义的结构和功能线索。

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