SAMDC3 enhances resistance to Barley stripe mosaic virus by promoting the ubiquitination and proteasomal degradation of viral γb protein

泛素 烟草 生物 蛋白酶体 细胞生物学 传染性 磷酸化 病毒 激酶 病毒学 基因 生物化学
作者
Zhaolei Li,Xinxin Yang,Wenli Li,Zhiyan Wen,Jiangning Duan,Zhihao Jiang,Dingliang Zhang,Xialin Xie,Xueting Wang,Fangfang Li,Dawei Li,Yongliang Zhang
出处
期刊:New Phytologist [Wiley]
卷期号:234 (2): 618-633 被引量:19
标识
DOI:10.1111/nph.17993
摘要

Summary Posttranslational modifications (PTMs) play important roles in virus–host interplay. We previously demonstrated that Barley stripe mosaic virus (BSMV) γb protein is phosphorylated by different host kinases to support or impede viral infection. However, whether and how other types of PTMs participate in BSMV infection remains to be explored. Here, we report that S ‐adenosylmethionine decarboxylase 3 (SAMDC3) from Nicotiana benthamiana or wheat ( Triticum aestivum ) interacts with γb. BSMV infection induced SAMDC3 expression. Overexpression of SAMDC3 led to the destabilization of γb and reduction in viral infectivity, whereas knocking out NbSAMDC3 increased susceptibility to BSMV. NbSAMDC3 positively regulated the 26S proteasome‐mediated degradation of γb via its PEST domain. Further mechanistic studies revealed that γb can be ubiquitinated in planta and that NbSAMDC3 promotes the proteasomal degradation of γb by increasing γb ubiquitination. We also found evidence that ubiquitination occurs at nonlysine residues (Ser‐133 and Cys‐144) within γb. Together, our results provide a function for SAMDC3 in defence against BSMV infection through targeting of γb abundance, which contributes to our understanding of how a plant host deploys the ubiquitin–proteasome system to mount defences against viral infections.
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