State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.
College of Modern Agriculture Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Viruses. 2021 Feb 7;13(2):254. doi: 10.3390/v13020254.
herpesvirus (CaHV) has been identified as a high-virulence pathogenic virus that infects aquatic animals, but the key factor for virus-host interaction is still unclear. Five Really interesting new genes (RING) finger proteins (39L, 52L, 131R, 136L, and 143R) of CaHV were screened to determine structural diversity. RING finger proteins were also predicted in other known fish herpesviruses, with an arrangement and number similar to CaHV. We performed multifaceted analyses of the proteins, including protein sizes, skeleton structures, subcellular localizations, and ubiquitination activities, to determine their precise roles in virus-host interactions. The five proteins were overexpressed and detected different levels of ubiquitination activities, and 143R showed the highest activity. Then, the prokaryotic expressed and purified full-length proteins (131R and 136L), RING domain isolates (131R and 136L), and RING domain-deleted mutants (131RΔ and 136LΔ) were prepared to detect their activities through ubiquitination assays. The results indicate that both full-length proteins and their isolates have activities that catalyze ubiquitination, and the full-length proteins possess higher activity than the isolates, but RING domain-deleted mutants lose their activities. Furthermore, the activities of the five proteins were verified as E3 ubiquitin ligase activity, showing that the RING domains determine the ubiquitination activity. These proteins present different subcellular localization. RING domain-deleted mutants showed similar subcellular localization with their full-length proteins, and all the isolates diffused in whole cells. The current results indicate that the sequence outside the RING domain determines subcellular localization and the level of ubiquitination activity, suggesting that the RING finger proteins of fish herpesviruses might have diverse functions in virus-host interaction.
疱疹病毒(CaHV)已被确定为感染水生动物的高毒力致病性病毒,但病毒-宿主相互作用的关键因素仍不清楚。本研究筛选了 CaHV 的五个 Really interesting new genes (RING) 指状蛋白(39L、52L、131R、136L 和 143R),以确定其结构多样性。在其他已知的鱼类疱疹病毒中也预测到了 RING 指状蛋白,其排列和数量与 CaHV 相似。我们对这些蛋白进行了多方面的分析,包括蛋白大小、骨架结构、亚细胞定位和泛素化活性,以确定它们在病毒-宿主相互作用中的精确作用。五种蛋白被过表达,并检测到不同水平的泛素化活性,其中 143R 表现出最高的活性。然后,制备了原核表达和纯化的全长蛋白(131R 和 136L)、RING 结构域分离物(131R 和 136L)和 RING 结构域缺失突变体(131RΔ和 136LΔ),通过泛素化测定检测它们的活性。结果表明,全长蛋白及其分离物都具有催化泛素化的活性,全长蛋白的活性高于分离物,但 RING 结构域缺失突变体失去了活性。此外,还验证了这五种蛋白的活性为 E3 泛素连接酶活性,表明 RING 结构域决定了泛素化活性。这些蛋白呈现出不同的亚细胞定位。RING 结构域缺失突变体与全长蛋白具有相似的亚细胞定位,而所有分离物都在整个细胞中扩散。目前的结果表明,RING 结构域外的序列决定了亚细胞定位和泛素化活性的水平,这表明鱼类疱疹病毒的 RING 指状蛋白在病毒-宿主相互作用中可能具有多种功能。