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首页> 外文期刊>Virology >Molecular dissection of Flock house virus protein B2 reveals that electrostatic interactions between N-terminal domains of B2 monomers are critical for dimerization
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Molecular dissection of Flock house virus protein B2 reveals that electrostatic interactions between N-terminal domains of B2 monomers are critical for dimerization

机译:羊群病毒蛋白B2的分子解剖揭示B2单体的N末端结构域之间的静电相互作用对于二聚化至关重要

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摘要

Flock house virus (FHV) encodes a suppressor protein B2 to overcome antiviral RNA silencing during infection. Biochemical analyses have shown that a homodimer of B2 binds to double-stranded RNA to inhibit dicer-mediated cleavage of dsRNA and incorporation of small interfering RNAs into the RNA-induced silencing complex. In this study, using FHV. Nicotiana benthamiana system, we identified that the charged amino acids at the N-terminus of B2 are critical for dimerization. Interestingly, B2 mutants defective in dimerization exhibited enhanced silencing suppressor activity, Furthermore, we found that the C-terminal charged amino acids are dispensable for B2 dimerization and viral RNA silencing suppression but are critical for transgene silencing suppression. Additional yeast two hybrid assays revealed that dimerization of B2 is not essential for interacting with the RNA silencing machinery. Taken together, our data provide evidence that both monomeric and dimeric B2 proteins function in different modes to suppress RNA silencing.
机译:鸡群病毒(FHV)编码抑制蛋白B2,以克服感染期间的抗病毒RNA沉默。生化分析表明,B2的同型二聚体与双链RNA结合,以抑制由切丁酶介导的dsRNA裂解,并将小干扰RNA掺入RNA诱导的沉默复合物中。在本研究中,使用FHV。在本氏烟草系统中,我们确定了B2 N端的带电荷氨基酸对于二聚化至关重要。有趣的是,二聚化缺陷的B2突变体表现出增强的沉默抑制活性,此外,我们发现C末端带电荷的氨基酸对于B2二聚化和病毒RNA沉默抑制是必不可少的,但对于转基因沉默抑制则至关重要。额外的两个酵母杂交试验表明,B2的二聚化对于与RNA沉默机制相互作用不是必需的。综上所述,我们的数据提供了证据,即单体B2和二聚体B2蛋白均以不同的模式发挥作用来抑制RNA沉默。

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