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SARS-CoV-2 infection induces DNA damage, through CHK1 degradation and impaired 53BP1 recruitment, and cellular senescence.
Gioia, Ubaldo; Tavella, Sara; Martínez-Orellana, Pamela; Cicio, Giada; Colliva, Andrea; Ceccon, Marta; Cabrini, Matteo; Henriques, Ana C; Fumagalli, Valeria; Paldino, Alessia; Presot, Ettore; Rajasekharan, Sreejith; Iacomino, Nicola; Pisati, Federica; Matti, Valentina; Sepe, Sara; Conte, Matilde I; Barozzi, Sara; Lavagnino, Zeno; Carletti, Tea; Volpe, Maria Concetta; Cavalcante, Paola; Iannacone, Matteo; Rampazzo, Chiara; Bussani, Rossana; Tripodo, Claudio; Zacchigna, Serena; Marcello, Alessandro; d'Adda di Fagagna, Fabrizio.
Afiliação
  • Gioia U; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Tavella S; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Martínez-Orellana P; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Cicio G; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Colliva A; University of Palermo, Palermo, Italy.
  • Ceccon M; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Cabrini M; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Henriques AC; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Fumagalli V; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Paldino A; IRCCS San Raffaele Scientific Institute & University, Milan, Italy.
  • Presot E; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Rajasekharan S; University of Trieste, Trieste, Italy.
  • Iacomino N; University of Padova, Padova, Italy.
  • Pisati F; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Matti V; Leibniz Institute for Experimental Virology (HPI), Hamburg, Germany.
  • Sepe S; Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.
  • Conte MI; Cogentech Società Benefit srl, Milan, Italy.
  • Barozzi S; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Lavagnino Z; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Carletti T; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Volpe MC; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Cavalcante P; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
  • Iannacone M; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Rampazzo C; International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.
  • Bussani R; Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.
  • Tripodo C; IRCCS San Raffaele Scientific Institute & University, Milan, Italy.
  • Zacchigna S; University of Padova, Padova, Italy.
  • Marcello A; University of Trieste, Trieste, Italy.
  • d'Adda di Fagagna F; IFOM ETS - The AIRC Institute of Molecular Oncology, Milan, Italy.
Nat Cell Biol ; 25(4): 550-564, 2023 04.
Article em En | MEDLINE | ID: mdl-36894671
ABSTRACT
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the RNA virus responsible for the coronavirus disease 2019 (COVID-19) pandemic. Although SARS-CoV-2 was reported to alter several cellular pathways, its impact on DNA integrity and the mechanisms involved remain unknown. Here we show that SARS-CoV-2 causes DNA damage and elicits an altered DNA damage response. Mechanistically, SARS-CoV-2 proteins ORF6 and NSP13 cause degradation of the DNA damage response kinase CHK1 through proteasome and autophagy, respectively. CHK1 loss leads to deoxynucleoside triphosphate (dNTP) shortage, causing impaired S-phase progression, DNA damage, pro-inflammatory pathways activation and cellular senescence. Supplementation of deoxynucleosides reduces that. Furthermore, SARS-CoV-2 N-protein impairs 53BP1 focal recruitment by interfering with damage-induced long non-coding RNAs, thus reducing DNA repair. Key observations are recapitulated in SARS-CoV-2-infected mice and patients with COVID-19. We propose that SARS-CoV-2, by boosting ribonucleoside triphosphate levels to promote its replication at the expense of dNTPs and by hijacking damage-induced long non-coding RNAs' biology, threatens genome integrity and causes altered DNA damage response activation, induction of inflammation and cellular senescence.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: COVID-19 Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: COVID-19 Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article