A fish herpesvirus highlights functional diversities among Zα domains related to phase separation induction and A-to-Z conversion

Author:

Diallo Mamadou Amadou1ORCID,Pirotte Sébastien1,Hu Yunlong1,Morvan Léa1,Rakus Krzysztof12,Suárez Nicolás M3,PoTsang Lee14,Saneyoshi Hisao5,Xu Yan5ORCID,Davison Andrew J3,Tompa Peter6ORCID,Sussman Joel L7ORCID,Vanderplasschen Alain1ORCID

Affiliation:

1. Department of Infectious and Parasitic Diseases, Immunology-Vaccinology, University of Liège , Liège  B-4000, Belgium

2. Department of Evolutionary Immunology, Institute of Zoology and Biomedical Research, Faculty of Biology, Jagiellonian University , Krakow  30387, Poland

3. MRC-University of Glasgow Centre for Virus Research , Glasgow  G61 1QH, UK

4. Department of Aquaculture, National Taiwan Ocean University , Keelung 202, Taiwan

5. Department of Medical Sciences, Division of Chemistry, University of Miyazaki , Miyazaki  889-1692, Japan

6. VIB-VUB Center for Structural Biology, Vrije Universiteit Brussel , Brussel  B-1050, Belgium

7. Department of Chemical and Structural Biology, Weizmann Institute of Science , Rehovot  7610001, Israel

Abstract

Abstract 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.

Funder

University of Liège

Fonds National Belge de la Recherche Scientifique

Welbio

Walloon Region

Medical Research Council

Vrije Universiteit Brussel

European Commission

Japan Society for the promotion of science Kakenhi

Publisher

Oxford University Press (OUP)

Subject

Genetics

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