生物
RNA沉默
蛋白酵素
反式siRNA
RNA诱导沉默复合物
基因沉默
核糖核酸
小干扰RNA
蛋白酶
RNA诱导的转录沉默
遗传学
RNA干扰
半胱氨酸蛋白酶
病毒学
基因
生物化学
酶
作者
Weiyao Hu,Zhaoji Dai,Peilan Liu,Chao Deng,Wei Shen,Zengping Li,Hongguang Cui
出处
期刊:Phytopathology
[American Phytopathological Society]
日期:2023-06-01
卷期号:113 (6): 1103-1114
被引量:1
标识
DOI:10.1094/phyto-10-22-0371-r
摘要
The genomic 5'-terminal regions of viruses in the family Potyviridae (potyvirids) encode two types of leader proteases: serine-protease (P1) and cysteine-protease (HCPro), which differ greatly in the arrangement and sequence composition among inter-genus viruses. Most potyvirids have the same tandemly arranged P1 and HCPro, whereas viruses in the genus Macluravirus encode a single distinct leader protease, a truncated version of HCPro with yet-unknown functions. We investigated the RNA silencing suppression (RSS) activity and its underpinning mechanism of the distinct HCPro from alpinia oxyphylla mosaic macluravirus (aHCPro). Sequence analysis revealed that macluraviral HCPros have obvious truncations in the N-terminal and middle regions when aligned to their counterparts in potyviruses (well-characterized viral suppressors of RNA silencing). Nearly all defined elements essential for the RSS activity of potyviral counterparts are not distinguished in macluraviral HCPros. Here, we demonstrated that aHCPro exhibits a similar anti-silencing activity with the potyviral counterpart. However, aHCPro fails to block both the local and systemic spreading of RNA silencing. In line, aHCPro interferes with the dsRNA synthesis, an upstream step in the RNA silencing pathway. Affinity-purification and NanoLC-MS/MS analysis revealed that aHCPro has no association with core components or their potential interactors involving in dsRNA synthesis from the protein layer. Instead, the ectopic expression of aHCPro significantly reduces the transcript abundance of RDR2, RDR6, SGS3, and SDE5. This study represents the first report on the anti-silencing function of Macluravirus-encoded HCPro and the underlying molecular mechanism.
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