PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2

Chromosomal single-strand DNA breaks occur frequently and require repair to avoid disease outcomes. Here, the authors show that in bird cells, PARP3 accelerates this repair, and use structural biology and cell biology techniques to reveal details of the mechanism of action.

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Autores principales: Gabrielle J. Grundy, Luis M. Polo, Zhihong Zeng, Stuart L. Rulten, Nicolas C. Hoch, Pathompong Paomephan, Yingqi Xu, Steve M. Sweet, Alan W. Thorne, Antony W. Oliver, Steve J. Matthews, Laurence H. Pearl, Keith W. Caldecott
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/f4adc148d44f418d9df058242e7f3bd6
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spelling oai:doaj.org-article:f4adc148d44f418d9df058242e7f3bd62021-12-02T16:56:45ZPARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu210.1038/ncomms124042041-1723https://doaj.org/article/f4adc148d44f418d9df058242e7f3bd62016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12404https://doaj.org/toc/2041-1723Chromosomal single-strand DNA breaks occur frequently and require repair to avoid disease outcomes. Here, the authors show that in bird cells, PARP3 accelerates this repair, and use structural biology and cell biology techniques to reveal details of the mechanism of action.Gabrielle J. GrundyLuis M. PoloZhihong ZengStuart L. RultenNicolas C. HochPathompong PaomephanYingqi XuSteve M. SweetAlan W. ThorneAntony W. OliverSteve J. MatthewsLaurence H. PearlKeith W. CaldecottNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gabrielle J. Grundy
Luis M. Polo
Zhihong Zeng
Stuart L. Rulten
Nicolas C. Hoch
Pathompong Paomephan
Yingqi Xu
Steve M. Sweet
Alan W. Thorne
Antony W. Oliver
Steve J. Matthews
Laurence H. Pearl
Keith W. Caldecott
PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
description Chromosomal single-strand DNA breaks occur frequently and require repair to avoid disease outcomes. Here, the authors show that in bird cells, PARP3 accelerates this repair, and use structural biology and cell biology techniques to reveal details of the mechanism of action.
format article
author Gabrielle J. Grundy
Luis M. Polo
Zhihong Zeng
Stuart L. Rulten
Nicolas C. Hoch
Pathompong Paomephan
Yingqi Xu
Steve M. Sweet
Alan W. Thorne
Antony W. Oliver
Steve J. Matthews
Laurence H. Pearl
Keith W. Caldecott
author_facet Gabrielle J. Grundy
Luis M. Polo
Zhihong Zeng
Stuart L. Rulten
Nicolas C. Hoch
Pathompong Paomephan
Yingqi Xu
Steve M. Sweet
Alan W. Thorne
Antony W. Oliver
Steve J. Matthews
Laurence H. Pearl
Keith W. Caldecott
author_sort Gabrielle J. Grundy
title PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
title_short PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
title_full PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
title_fullStr PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
title_full_unstemmed PARP3 is a sensor of nicked nucleosomes and monoribosylates histone H2BGlu2
title_sort parp3 is a sensor of nicked nucleosomes and monoribosylates histone h2bglu2
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/f4adc148d44f418d9df058242e7f3bd6
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