Angira Aniket, Yadav Siddharth, Mathur Puniti, Baranwal V K, Ranjan Aashish, Choudhary Nandlal
Amity Institute of Virology and Immunology, Amity University Uttar Pradesh, Noida, 201313 India.
Amity Institute of Biotechnology, Amity University Uttar Pradesh, Noida, 201313 India.
Virusdisease. 2025 Mar;36(1):31-40. doi: 10.1007/s13337-024-00904-8. Epub 2025 Jan 8.
The RNA silencing mechanism is a crucial regulatory system in plants, particularly in antiviral defense. However, most of the plant viruses encode a specific protein called RNA silencing suppressor protein that suppress the RNA silencing mechanism of host. This study employs the bioinformatics tools, including SWISS homology model and I-TASSER, to predict the coat protein (CP) tertiary structure of Indian citrus ringspot virus (ICRSV). Then, five protein-protein docking servers (GRAMM, pyDockWEB, HawkDock, ZDOCK and ClusPro) were utilized to investigate interactions of CP of ICRSV with Argonaut2/Dicer-Like (DCL4) protein 4 of RNA silencing pathway of host. In blind docking experiments, the CP consistently engaged in docking interactions with DCL4, while with AGO2, it interacted near the PIWI and MID domains. The AGO2-CP cluster demonstrated 4 salt bridges, 30 hydrogen bonds, and 328 non-bonded contacts, with interface areas spanning 2529 in AGO2 and 2424 in CP, involving 50 and 51 interface residues, respectively. Similarly, the DCL4-CP cluster showed 5 hydrogen bonds and 122 non-bonded contacts, with interface areas spanning 965 in DCL4 and 987 in CP, involving 16 and 19 interface residues, respectively. The established phenomenon of CP interaction with AGO2/DCL4, may resulting in the inhibition of the RNA silencing mechanism and shedding light on the suppression mechanisms of host defense responses.
The online version contains supplementary material available at 10.1007/s13337-024-00904-8.
RNA沉默机制是植物中至关重要的调控系统,尤其是在抗病毒防御方面。然而,大多数植物病毒编码一种名为RNA沉默抑制蛋白的特定蛋白质,该蛋白可抑制宿主的RNA沉默机制。本研究利用包括SWISS同源模型和I-TASSER在内的生物信息学工具,预测印度柑橘环斑病毒(ICRSV)的外壳蛋白(CP)三级结构。然后,使用五个蛋白质-蛋白质对接服务器(GRAMM、pyDockWEB、HawkDock、ZDOCK和ClusPro)来研究ICRSV的CP与宿主RNA沉默途径的Argonaut2/类Dicer(DCL4)蛋白4之间的相互作用。在盲对接实验中,CP始终与DCL4进行对接相互作用,而与AGO2相互作用时,它在PIWI和MID结构域附近相互作用。AGO2-CP簇显示出4个盐桥、30个氢键和328个非键接触,AGO2中的界面面积为2529,CP中的界面面积为2424,分别涉及50个和51个界面残基。同样,DCL4-CP簇显示出5个氢键和122个非键接触,DCL4中的界面面积为965,CP中的界面面积为987,分别涉及16个和19个界面残基。已确定的CP与AGO2/DCL4相互作用的现象,可能导致RNA沉默机制受到抑制,并为宿主防御反应的抑制机制提供线索。
在线版本包含可在10.1007/s13337-024-00904-8获取的补充材料。