A jingmenvirus RNA-dependent RNA polymerase structurally resembles the flavivirus counterpart but with different features at the initiation phase

Author:

Wang Xinyu12,Jing Xuping1,Shi Junming23,Liu Qiaojie1,Shen Shu3,Cheung Peter Pak-Hang4,Wu Jiqin1,Deng Fei3,Gong Peng15ORCID

Affiliation:

1. Key Laboratory of Special Pathogens and Biosafety, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences , No. 262 Jin Long Street , Wuhan , Hubei  430207 , China

2. University of Chinese Academy of Sciences , Beijing  100049 , China

3. State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences , No.262 Jin Long Street , Wuhan , Hubei  430207 , China

4. Department of Chemical Pathology, Chinese University of Hong Kong, Prince of Wales Hospital , Shatin , New Territories, Hong Kong , China

5. Drug Discovery Center for Infectious Diseases, Nankai University , Tianjin  300350 , China

Abstract

Abstract Jingmenviruses are a category of emerging segmented viruses that have garnered global attention in recent years, and are close relatives of the flaviviruses in the Flaviviridae family. One of their genome segments encodes NSP1 homologous to flavivirus NS5. NSP1 comprises both the methyltransferase (MTase) and RNA-dependent RNA polymerase (RdRP) modules playing essential roles in viral genome replication and capping. Here we solved a 1.8-Å resolution crystal structure of the NSP1 RdRP module from Jingmen tick virus (JMTV), the type species of jingmenviruses. The structure highly resembles flavivirus NS5 RdRP despite a sequence identity less than 30%. NSP1 RdRP enzymatic properties were dissected in a comparative setting with several representative Flaviviridae RdRPs included. Our data indicate that JMTV NSP1 produces characteristic 3-mer abortive products similar to the hepatitis C virus RdRP, and exhibits the highest preference of terminal initiation and shorter-primer usage. Unlike flavivirus NS5, JMTV RdRP may require the MTase for optimal transition from initiation to elongation, as an MTase-less NSP1 construct produced more 4–5-mer intermediate products than the full-length protein. Taken together, this work consolidates the evolutionary relationship between the jingmenvirus group and the Flaviviridae family, providing a basis to the further understanding of their viral replication/transcription process.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Research Grants Council (RGC) Collaborative Research Fund of Hong Kong, China

NSFC

Youth Innovation Promotion Association Program of Chinese Academy of Sciences, China

Natural Science Foundation of Hubei Province

Key Biosafety Science and Technology Program of Hubei Jiangxia Laboratory, China

Knowledge Innovation Program of Wuhan-Shuguang Project, Hubei, China

Publisher

Oxford University Press (OUP)

Subject

Genetics

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