首页> 外文期刊>Nucleic Acids Research >Inhibition of 3' modification of small RNAs in virus-infected plants require spatial and temporal co-expression of small RNAs and viral silencing-suppressor proteins.
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Inhibition of 3' modification of small RNAs in virus-infected plants require spatial and temporal co-expression of small RNAs and viral silencing-suppressor proteins.

机译:在病毒感染的植物中抑制小RNA的3'修饰需要小RNA和病毒沉默抑制蛋白的时空共表达。

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Plant viruses are inducers and targets of RNA silencing. Viruses counteract with RNA silencing by expressing silencing-suppressor proteins. Many of the identified proteins bind siRNAs, which prevents assembly of silencing effector complexes, and also interfere with their 3' methylation, which protects them against degradation. Here, we investigated the 3' modification of silencing-related small RNAs in Nicotiana benthamiana plants infected with viruses expressing RNA silencing suppressors, the p19 protein of Carnation Italian ringspot virus (CIRV) and HC-Pro of Tobacco etch virus (TEV). We found that CIRV had only a slight effect on viral siRNA 3' modification, but TEV significantly inhibited the 3' modification of si/miRNAs. We also found that p19 and HC-Pro were able to bind both 3' modified and non-modified small RNAs in vivo. The findings suggest that the 3' modification of viral siRNAs occurs in the cytoplasm, though miRNA 3' modification likely takes place in the nucleus as well. Both silencing suppressors inhibited the 3' modification of si/miRNAs when they and small RNAs were transiently co-expressed, suggesting that the inhibition of si/miRNA 3' modification requires spatial and temporal co-expression. Finally, our data revealed that a HEN1-like methyltransferase might account for the small RNA modification at the their 3'-terminal nucleotide in N. benthamiana.
机译:植物病毒是RNA沉默的诱导剂和靶标。病毒通过表达沉默抑制蛋白来对抗RNA沉默。许多已鉴定的蛋白质与siRNA结合,从而阻止沉默效应子复合物的组装,并干扰其3'甲基化,从而保护其免于降解。在这里,我们调查了感染本草烟草的本氏烟草植物中沉默相关小RNA的3'修饰,该病毒表达RNA沉默抑制剂,康乃馨意大利环斑病毒(CIRV)的p19蛋白和烟草蚀刻病毒(TEV)的HC-Pro。我们发现CIRV对病毒siRNA 3'修饰的影响很小,但是TEV显着抑制了si / miRNA的3'修饰。我们还发现p19和HC-Pro能够在体内结合3'修饰的和未修饰的小RNA。这些发现表明,病毒siRNA的3'修饰发生在细胞质中,尽管miRNA 3'修饰也可能发生在细胞核中。当它们与小RNA瞬时共表达时,两种沉默抑制子均抑制si / miRNA的3'修饰,这表明抑制si / miRNA 3'修饰需要空间和时间上的共表达。最后,我们的数据显示,像HEN1一样的甲基转移酶可能解释了本氏烟草中3'-末端核苷酸的小RNA修饰。

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