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SARS-Coronavirus-2 Nsp13 Possesses NTPase and RNA Helicase Activities That Can Be Inhibited by Bismuth Salts.
Shu, Ting; Huang, Muhan; Wu, Di; Ren, Yujie; Zhang, Xueyi; Han, Yang; Mu, Jingfang; Wang, Ruibing; Qiu, Yang; Zhang, Ding-Yu; Zhou, Xi.
  • Shu T; Center for Translational Medicine, Wuhan Jinyintan Hospital, Wuhan, 430023, China.
  • Huang M; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Wu D; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Ren Y; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Zhang X; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Han Y; Center for Precision Translational Medicine of Wuhan Institute of Virology and Guangzhou Women and Children's Medical Center, Guangzhou Women and Children's Medical Center, Guangzhou, 510120, China.
  • Mu J; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Wang R; Center for Translational Medicine, Wuhan Jinyintan Hospital, Wuhan, 430023, China.
  • Qiu Y; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Zhang DY; State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, 430071, China.
  • Zhou X; State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Macau SAR, 999078, China.
Virol Sin ; 35(3): 321-329, 2020 Jun.
Article in English | MEDLINE | ID: covidwho-959357
ABSTRACT
The ongoing outbreak of Coronavirus Disease 2019 (COVID-19) has become a global public health emergency. SARS-coronavirus-2 (SARS-CoV-2), the causative pathogen of COVID-19, is a positive-sense single-stranded RNA virus belonging to the family Coronaviridae. For RNA viruses, virus-encoded RNA helicases have long been recognized to play pivotal roles during viral life cycles by facilitating the correct folding and replication of viral RNAs. Here, our studies show that SARS-CoV-2-encoded nonstructural protein 13 (nsp13) possesses the nucleoside triphosphate hydrolase (NTPase) and RNA helicase activities that can hydrolyze all types of NTPs and unwind RNA helices dependently of the presence of NTP, and further characterize the biochemical characteristics of these two enzymatic activities associated with SARS-CoV-2 nsp13. Moreover, we found that some bismuth salts could effectively inhibit both the NTPase and RNA helicase activities of SARS-CoV-2 nsp13 in a dose-dependent manner. Thus, our findings demonstrate the NTPase and helicase activities of SARS-CoV-2 nsp13, which may play an important role in SARS-CoV-2 replication and serve as a target for antivirals.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Salts / Bismuth / Viral Nonstructural Proteins / RNA Helicases / Nucleoside-Triphosphatase / Betacoronavirus / Methyltransferases Limits: Humans Language: English Journal: Virol Sin Journal subject: Virology Year: 2020 Document Type: Article Affiliation country: S12250-020-00242-1

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Salts / Bismuth / Viral Nonstructural Proteins / RNA Helicases / Nucleoside-Triphosphatase / Betacoronavirus / Methyltransferases Limits: Humans Language: English Journal: Virol Sin Journal subject: Virology Year: 2020 Document Type: Article Affiliation country: S12250-020-00242-1