State Key Laboratory for Agro-biotechnology and Ministry of Agriculture Key Laboratory of Plant Pathology, China Agricultural University, Beijing, P. R. China.
State Key Laboratory of Agro-Biotechnology and Ministry of Agriculture Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing, P. R., China.
J Exp Bot. 2018 May 25;69(12):3127-3139. doi: 10.1093/jxb/ery131.
In interactions between poleroviruses and their hosts, few cellular proteins have been identified that directly interact with the multifunctional virus P0 protein. To help explore the functions of P0, we identified a Brassica yellows virus genotype A (BrYV-A) P0BrA-interacting protein from Nicotiana benthamiana, Rubisco assembly factor 2 (NbRAF2), which localizes in the nucleus, cell periphery, chloroplasts, and stromules. We found that its C-terminal domain (amino acids 183-211) is required for self-interaction. A split ubiquitin membrane-bound yeast two-hybrid system and co-immunoprecipitation assays showed that NbRAF2 interacted with P0BrA, and co-localized in the nucleus and at the cell periphery. Interestingly, the nuclear pool of NbRAF2 decreased in the presence of P0BrA and during BrYV-A infection, and the P0BrA-mediated reduction of nuclear NbRAF2 required dual localization of NbRAF2 in the chloroplasts and nucleus. Tobacco rattle virus-based virus-induced gene silencing of NbRAF2 promoted BrYV-A infection in N. benthamiana, and the overexpression of nuclear NbRAF2 inhibited BrYV-A accumulation. Potato leafroll virus P0PL also interacted with NbRAF2 and decreased its nuclear accumulation, indicating that NbRAF2 may be a common target of poleroviruses. These results suggest that nuclear NbRAF2 possesses antiviral activity against BrYV-A infection, and that BrYV-A P0BrA interacts with NbRAF2 and alters its localization pattern to facilitate virus infection.
在杆状病毒与其宿主的相互作用中,已经鉴定出很少的细胞蛋白与多功能病毒 P0 蛋白直接相互作用。为了帮助探索 P0 的功能,我们从黄花烟草中鉴定出一个黄花烟草病毒基因型 A (BrYV-A) P0BrA 相互作用蛋白,Rubisco 组装因子 2 (NbRAF2),它定位于核、细胞质周边、叶绿体和质体丝。我们发现其 C 端结构域(氨基酸 183-211)是自身相互作用所必需的。分裂泛素膜结合酵母双杂交系统和共免疫沉淀试验表明,NbRAF2 与 P0BrA 相互作用,并在核和细胞质周边共定位。有趣的是,在存在 P0BrA 和 BrYV-A 感染期间,核内 NbRAF2 的池减少,并且 P0BrA 介导的核内 NbRAF2 减少需要 NbRAF2 在叶绿体和核中的双重定位。基于烟草脆裂病毒的病毒诱导基因沉默的 NbRAF2 促进 BrYV-A 在黄花烟草中的感染,并且核内 NbRAF2 的过表达抑制 BrYV-A 的积累。马铃薯卷叶病毒 P0PL 也与 NbRAF2 相互作用并减少其核内积累,表明 NbRAF2 可能是杆状病毒的共同靶标。这些结果表明,核内 NbRAF2 对 BrYV-A 感染具有抗病毒活性,并且 BrYV-A P0BrA 与 NbRAF2 相互作用并改变其定位模式以促进病毒感染。