SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells

SAMHD1 is a cellular dNTPase proposed to inhibit HIV-1 reverse transcription in non-cycling immune cells by limiting dNTP substrate supply; its anti-viral but not dNTPase function is downregulated by phosphorylation of T592. Here, Martinat et al. describe an additional SUMOylation at residue K595, w...

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Autores principales: Charlotte Martinat, Arthur Cormier, Joëlle Tobaly-Tapiero, Noé Palmic, Nicoletta Casartelli, Bijan Mahboubi, Si’Ana A. Coggins, Julian Buchrieser, Mirjana Persaud, Felipe Diaz-Griffero, Lucile Espert, Guillaume Bossis, Pascale Lesage, Olivier Schwartz, Baek Kim, Florence Margottin-Goguet, Ali Saïb, Alessia Zamborlini
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/70d02ba8c29446d69d93dada293f5c11
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spelling oai:doaj.org-article:70d02ba8c29446d69d93dada293f5c112021-12-02T16:14:24ZSUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells10.1038/s41467-021-24802-52041-1723https://doaj.org/article/70d02ba8c29446d69d93dada293f5c112021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24802-5https://doaj.org/toc/2041-1723SAMHD1 is a cellular dNTPase proposed to inhibit HIV-1 reverse transcription in non-cycling immune cells by limiting dNTP substrate supply; its anti-viral but not dNTPase function is downregulated by phosphorylation of T592. Here, Martinat et al. describe an additional SUMOylation at residue K595, which promotes the dNTPase-independent restriction activity.Charlotte MartinatArthur CormierJoëlle Tobaly-TapieroNoé PalmicNicoletta CasartelliBijan MahboubiSi’Ana A. CogginsJulian BuchrieserMirjana PersaudFelipe Diaz-GrifferoLucile EspertGuillaume BossisPascale LesageOlivier SchwartzBaek KimFlorence Margottin-GoguetAli SaïbAlessia ZamborliniNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Charlotte Martinat
Arthur Cormier
Joëlle Tobaly-Tapiero
Noé Palmic
Nicoletta Casartelli
Bijan Mahboubi
Si’Ana A. Coggins
Julian Buchrieser
Mirjana Persaud
Felipe Diaz-Griffero
Lucile Espert
Guillaume Bossis
Pascale Lesage
Olivier Schwartz
Baek Kim
Florence Margottin-Goguet
Ali Saïb
Alessia Zamborlini
SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
description SAMHD1 is a cellular dNTPase proposed to inhibit HIV-1 reverse transcription in non-cycling immune cells by limiting dNTP substrate supply; its anti-viral but not dNTPase function is downregulated by phosphorylation of T592. Here, Martinat et al. describe an additional SUMOylation at residue K595, which promotes the dNTPase-independent restriction activity.
format article
author Charlotte Martinat
Arthur Cormier
Joëlle Tobaly-Tapiero
Noé Palmic
Nicoletta Casartelli
Bijan Mahboubi
Si’Ana A. Coggins
Julian Buchrieser
Mirjana Persaud
Felipe Diaz-Griffero
Lucile Espert
Guillaume Bossis
Pascale Lesage
Olivier Schwartz
Baek Kim
Florence Margottin-Goguet
Ali Saïb
Alessia Zamborlini
author_facet Charlotte Martinat
Arthur Cormier
Joëlle Tobaly-Tapiero
Noé Palmic
Nicoletta Casartelli
Bijan Mahboubi
Si’Ana A. Coggins
Julian Buchrieser
Mirjana Persaud
Felipe Diaz-Griffero
Lucile Espert
Guillaume Bossis
Pascale Lesage
Olivier Schwartz
Baek Kim
Florence Margottin-Goguet
Ali Saïb
Alessia Zamborlini
author_sort Charlotte Martinat
title SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
title_short SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
title_full SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
title_fullStr SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
title_full_unstemmed SUMOylation of SAMHD1 at Lysine 595 is required for HIV-1 restriction in non-cycling cells
title_sort sumoylation of samhd1 at lysine 595 is required for hiv-1 restriction in non-cycling cells
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/70d02ba8c29446d69d93dada293f5c11
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