DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response

In the Fanconi anemia pathway, deubiquitination of FANCD2 is a fundamental regulatory step. Here, the authors have developed a set of biochemical tools to reconstitute FANCD2 deubiquitination by recombinant USP1-UAF1-RAD51AP1 and reveal critical mechanistic details of the process.

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Autores principales: Fengshan Liang, Adam S. Miller, Simonne Longerich, Caroline Tang, David Maranon, Elizabeth A. Williamson, Robert Hromas, Claudia Wiese, Gary M. Kupfer, Patrick Sung
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c6be56908081470bb7bc5319e965b081
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spelling oai:doaj.org-article:c6be56908081470bb7bc5319e965b0812021-12-02T15:35:08ZDNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response10.1038/s41467-019-10408-52041-1723https://doaj.org/article/c6be56908081470bb7bc5319e965b0812019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10408-5https://doaj.org/toc/2041-1723In the Fanconi anemia pathway, deubiquitination of FANCD2 is a fundamental regulatory step. Here, the authors have developed a set of biochemical tools to reconstitute FANCD2 deubiquitination by recombinant USP1-UAF1-RAD51AP1 and reveal critical mechanistic details of the process.Fengshan LiangAdam S. MillerSimonne LongerichCaroline TangDavid MaranonElizabeth A. WilliamsonRobert HromasClaudia WieseGary M. KupferPatrick SungNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Fengshan Liang
Adam S. Miller
Simonne Longerich
Caroline Tang
David Maranon
Elizabeth A. Williamson
Robert Hromas
Claudia Wiese
Gary M. Kupfer
Patrick Sung
DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
description In the Fanconi anemia pathway, deubiquitination of FANCD2 is a fundamental regulatory step. Here, the authors have developed a set of biochemical tools to reconstitute FANCD2 deubiquitination by recombinant USP1-UAF1-RAD51AP1 and reveal critical mechanistic details of the process.
format article
author Fengshan Liang
Adam S. Miller
Simonne Longerich
Caroline Tang
David Maranon
Elizabeth A. Williamson
Robert Hromas
Claudia Wiese
Gary M. Kupfer
Patrick Sung
author_facet Fengshan Liang
Adam S. Miller
Simonne Longerich
Caroline Tang
David Maranon
Elizabeth A. Williamson
Robert Hromas
Claudia Wiese
Gary M. Kupfer
Patrick Sung
author_sort Fengshan Liang
title DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
title_short DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
title_full DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
title_fullStr DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
title_full_unstemmed DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
title_sort dna requirement in fancd2 deubiquitination by usp1-uaf1-rad51ap1 in the fanconi anemia dna damage response
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c6be56908081470bb7bc5319e965b081
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