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Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites

BRCA1 accumulation at DNA damage sites is an important step for its function in the DNA damage response and in DNA repair. BRCA1-BRCT domains bind to proteins containing the phosphorylated serine-proline-x-phenylalanine (pSPxF) motif including Abraxas, Bach1/FancJ, and CtIP. In this study, we demons...

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Autores principales: Wu, Qian, Paul, Atanu, Su, Dan, Mehmood, Shahid, Foo, Tzeh Keong, Ochi, Takashi, Bunting, Emma L., Xia, Bing, Robinson, Carol V., Wang, Bin, Blundell, Tom L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747905/
https://www.ncbi.nlm.nih.gov/pubmed/26778126
http://dx.doi.org/10.1016/j.molcel.2015.12.017
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author Wu, Qian
Paul, Atanu
Su, Dan
Mehmood, Shahid
Foo, Tzeh Keong
Ochi, Takashi
Bunting, Emma L.
Xia, Bing
Robinson, Carol V.
Wang, Bin
Blundell, Tom L.
author_facet Wu, Qian
Paul, Atanu
Su, Dan
Mehmood, Shahid
Foo, Tzeh Keong
Ochi, Takashi
Bunting, Emma L.
Xia, Bing
Robinson, Carol V.
Wang, Bin
Blundell, Tom L.
author_sort Wu, Qian
collection PubMed
description BRCA1 accumulation at DNA damage sites is an important step for its function in the DNA damage response and in DNA repair. BRCA1-BRCT domains bind to proteins containing the phosphorylated serine-proline-x-phenylalanine (pSPxF) motif including Abraxas, Bach1/FancJ, and CtIP. In this study, we demonstrate that ionizing radiation (IR)-induces ATM-dependent phosphorylation of serine 404 (S404) next to the pSPxF motif. Crystal structures of BRCT/Abraxas show that phosphorylation of S404 is important for extensive interactions through the N-terminal sequence outside the pSPxF motif and leads to formation of a stable dimer. Mutation of S404 leads to deficiency in BRCA1 accumulation at DNA damage sites and cellular sensitivity to IR. In addition, two germline mutations of BRCA1 are found to disrupt the dimer interface and dimer formation. Thus, we demonstrate a mechanism involving IR-induced phosphorylation and dimerization of the BRCT/Abraxas complex for regulating Abraxas-mediated recruitment of BRCA1 in response to IR.
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spelling pubmed-47479052016-02-29 Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites Wu, Qian Paul, Atanu Su, Dan Mehmood, Shahid Foo, Tzeh Keong Ochi, Takashi Bunting, Emma L. Xia, Bing Robinson, Carol V. Wang, Bin Blundell, Tom L. Mol Cell Article BRCA1 accumulation at DNA damage sites is an important step for its function in the DNA damage response and in DNA repair. BRCA1-BRCT domains bind to proteins containing the phosphorylated serine-proline-x-phenylalanine (pSPxF) motif including Abraxas, Bach1/FancJ, and CtIP. In this study, we demonstrate that ionizing radiation (IR)-induces ATM-dependent phosphorylation of serine 404 (S404) next to the pSPxF motif. Crystal structures of BRCT/Abraxas show that phosphorylation of S404 is important for extensive interactions through the N-terminal sequence outside the pSPxF motif and leads to formation of a stable dimer. Mutation of S404 leads to deficiency in BRCA1 accumulation at DNA damage sites and cellular sensitivity to IR. In addition, two germline mutations of BRCA1 are found to disrupt the dimer interface and dimer formation. Thus, we demonstrate a mechanism involving IR-induced phosphorylation and dimerization of the BRCT/Abraxas complex for regulating Abraxas-mediated recruitment of BRCA1 in response to IR. Cell Press 2016-02-04 /pmc/articles/PMC4747905/ /pubmed/26778126 http://dx.doi.org/10.1016/j.molcel.2015.12.017 Text en © 2016 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wu, Qian
Paul, Atanu
Su, Dan
Mehmood, Shahid
Foo, Tzeh Keong
Ochi, Takashi
Bunting, Emma L.
Xia, Bing
Robinson, Carol V.
Wang, Bin
Blundell, Tom L.
Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title_full Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title_fullStr Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title_full_unstemmed Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title_short Structure of BRCA1-BRCT/Abraxas Complex Reveals Phosphorylation-Dependent BRCT Dimerization at DNA Damage Sites
title_sort structure of brca1-brct/abraxas complex reveals phosphorylation-dependent brct dimerization at dna damage sites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747905/
https://www.ncbi.nlm.nih.gov/pubmed/26778126
http://dx.doi.org/10.1016/j.molcel.2015.12.017
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