Department of Infectious and Parasitic Diseases, Immunology-Vaccinology, University of Liège, Liège B-4000, Belgium.
Department of Evolutionary Immunology, Institute of Zoology and Biomedical Research, Faculty of Biology, Jagiellonian University, Krakow 30387, Poland.
Nucleic Acids Res. 2023 Jan 25;51(2):806-830. doi: 10.1093/nar/gkac761.
Zalpha (Zα) domains bind to left-handed Z-DNA and Z-RNA. The Zα domain protein family includes cellular (ADAR1, ZBP1 and PKZ) and viral (vaccinia virus E3 and cyprinid herpesvirus 3 (CyHV-3) ORF112) proteins. We studied CyHV-3 ORF112, which contains an intrinsically disordered region and a Zα domain. Genome editing of CyHV-3 indicated that the expression of only the Zα domain of ORF112 was sufficient for normal viral replication in cell culture and virulence in carp. In contrast, its deletion was lethal for the virus. These observations revealed the potential of the CyHV-3 model as a unique platform to compare the exchangeability of Zα domains expressed alone in living cells. Attempts to rescue the ORF112 deletion by a broad spectrum of cellular, viral, and artificial Zα domains showed that only those expressing Z-binding activity, the capacity to induce liquid-liquid phase separation (LLPS), and A-to-Z conversion, could rescue viral replication. For the first time, this study reports the ability of some Zα domains to induce LLPS and supports the biological relevance of dsRNA A-to-Z conversion mediated by Zα domains. This study expands the functional diversity of Zα domains and stimulates new hypotheses concerning the mechanisms of action of proteins containing Zα domains.
Zalpha (Zα) 结构域与左手 Z-DNA 和 Z-RNA 结合。Zα 结构域蛋白家族包括细胞(ADAR1、ZBP1 和 PKZ)和病毒(牛痘病毒 E3 和鲤鱼疱疹病毒 3(CyHV-3)ORF112)蛋白。我们研究了 CyHV-3 ORF112,它包含一个固有无序区域和一个 Zα 结构域。CyHV-3 的基因组编辑表明,仅表达 ORF112 的 Zα 结构域就足以在细胞培养物中进行正常病毒复制和鲤鱼中的毒力。相比之下,其缺失对病毒是致命的。这些观察结果揭示了 CyHV-3 模型作为一个独特平台的潜力,可用于比较单独在活细胞中表达的 Zα 结构域的可交换性。尝试通过广泛的细胞、病毒和人工 Zα 结构域来挽救 ORF112 的缺失,但只有那些表达 Z 结合活性、诱导液-液相分离 (LLPS) 的能力和 A-to-Z 转换的能力,才能挽救病毒复制。这是首次报道一些 Zα 结构域具有诱导 LLPS 的能力,并支持 Zα 结构域介导的 dsRNA A-to-Z 转换的生物学相关性。本研究扩展了 Zα 结构域的功能多样性,并激发了关于含 Zα 结构域蛋白作用机制的新假设。