De Silva Anuradha, Kim Kihun, Weiland John, Hwang Jihyun, Chung Jacky, Pereira Higor S, Patel Trushar R, Teyra Joan, Patel Ankoor, Mira Mohammed M, Khajehpour Mazdak, Bolton Melvin, Stasolla Claudio, Sidhu Sachdev S, Mark Brian L
Department of Microbiology, Faculty of Science, University of Manitoba, Winnipeg, Manitoba, Canada.
Sugarbeet and Potato Research Unit, Edward T. Schafer Agricultural Research Center, USDA Agricultural Research Services, North Dakota, United States of America.
PLoS Pathog. 2025 Jan 27;21(1):e1012899. doi: 10.1371/journal.ppat.1012899. eCollection 2025 Jan.
RNA viruses have evolved numerous strategies to overcome host resistance and immunity, including the use of multifunctional proteases that not only cleave viral polyproteins during virus replication but also deubiquitinate cellular proteins to suppress ubiquitin (Ub)-mediated antiviral mechanisms. Here, we report an approach to attenuate the infection of Arabidopsis thaliana by Turnip Yellow Mosaic Virus (TYMV) by suppressing the polyprotein cleavage and deubiquitination activities of the TYMV protease (PRO). Performing selections using a library of phage-displayed Ub variants (UbVs) for binding to recombinant PRO yielded several UbVs that bound the viral protease with nanomolar affinities and blocked its function. The strongest binding UbV (UbV3) candidate had a EC50 of 0.3 nM and inhibited both polyprotein cleavage and DUB activity of PRO in vitro. X-ray crystal structures of UbV3 alone and in complex with PRO reveal that the inhibitor exists as a dimer that binds two copies of PRO. Consistent with our biochemical and structural findings, transgenic expression of UbV3 in the cytosol of A. thaliana suppressed TYMV replication in planta, with the reduction in viral load being correlated to UbV3 expression level. Our results demonstrate the potential of using UbVs to protect plants from tymovirus infection, a family of viruses that contain numerous members of significant agricultural concern, as well as other plant viruses that express functionally related proteases with deubiquitinating activity.
RNA病毒已经进化出多种策略来克服宿主的抗性和免疫,包括利用多功能蛋白酶,这些蛋白酶不仅在病毒复制过程中切割病毒多聚蛋白,还能去除细胞蛋白的泛素化修饰,以抑制泛素(Ub)介导的抗病毒机制。在此,我们报道了一种通过抑制芜菁黄花叶病毒(TYMV)蛋白酶(PRO)的多聚蛋白切割和去泛素化活性来减弱其对拟南芥感染的方法。使用噬菌体展示的泛素变体(UbV)文库进行筛选,以筛选出能与重组PRO结合的变体,得到了几种以纳摩尔亲和力结合病毒蛋白酶并阻断其功能的UbV。结合能力最强的UbV(UbV3)候选物的EC50为0.3 nM,在体外抑制了PRO的多聚蛋白切割和去泛素化酶(DUB)活性。UbV3单独及与PRO复合物的X射线晶体结构表明,该抑制剂以二聚体形式存在,可结合两个PRO分子。与我们的生化和结构研究结果一致,在拟南芥细胞质中过表达UbV3可抑制TYMV在植物体内的复制,病毒载量的降低与UbV3表达水平相关。我们的结果表明,利用UbV保护植物免受芜菁黄花叶病毒属感染具有潜力,该病毒属包含许多对农业具有重要影响的成员,以及其他表达具有去泛素化活性的功能相关蛋白酶的植物病毒。