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53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in

Resection of double-strand breaks (DSBs) dictates the choice between Homology-Directed Repair (HDR), which requires a 3′ overhang, and classical Non-Homologous End Joining (c-NHEJ), which can join unresected ends(1,2). BRCA1 mutant cancers show minimal DSB resection, rendering them HDR deficient and...

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Autores principales: Mirman, Zachary, Lottersberger, Francisca, Takai, Hiroyuki, Kibe, Tatsuya, Gong, Yi, Takai, Kaori, Bianchi, Alessandro, Zimmermann, Michal, Durocher, Daniel, de Lange, Titia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6072559/
https://www.ncbi.nlm.nih.gov/pubmed/30022158
http://dx.doi.org/10.1038/s41586-018-0324-7
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author Mirman, Zachary
Lottersberger, Francisca
Takai, Hiroyuki
Kibe, Tatsuya
Gong, Yi
Takai, Kaori
Bianchi, Alessandro
Zimmermann, Michal
Durocher, Daniel
de Lange, Titia
author_facet Mirman, Zachary
Lottersberger, Francisca
Takai, Hiroyuki
Kibe, Tatsuya
Gong, Yi
Takai, Kaori
Bianchi, Alessandro
Zimmermann, Michal
Durocher, Daniel
de Lange, Titia
author_sort Mirman, Zachary
collection PubMed
description Resection of double-strand breaks (DSBs) dictates the choice between Homology-Directed Repair (HDR), which requires a 3′ overhang, and classical Non-Homologous End Joining (c-NHEJ), which can join unresected ends(1,2). BRCA1 mutant cancers show minimal DSB resection, rendering them HDR deficient and sensitive to PARP1 inhibitors (PARPi)(3–8). When BRCA1 is absent, DSB resection is thought to be prevented by 53BP1, Rif1, and the Rev7/Shld1/Shld2/Shld3 (Shieldin) complex and loss of these factors diminishes PARPi sensitivity(4,6–9). Here we address the mechanism by which 53BP1/Rif1/Shieldin regulate the generation of recombinogenic 3′ overhangs. We report that CST (Ctc1, Stn1, Ten1(10)), an RPA-like complex that functions as a Polymeraseα/primase accessory factor(11) is a downstream effector in the 53BP1 pathway. CST interacts with Shieldin and localizes with Polα to sites of DNA damage in a 53BP1- and Shieldin-dependent manner. Like loss of 53BP1/Rif1/Shieldin, CST depletion leads to increased resection. Furthermore, in BRCA1-deficient cells, CST blocks Rad51 loading and promotes PARPi efficacy. Finally, Polα inhibition diminishes the effect of PARPi in BRCA1-deficient cells. These data suggest that CST/Polα-mediated fill-in contributes to the control of DSB repair by 53BP1, Rif1, and Shieldin.
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spelling pubmed-60725592019-01-18 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in Mirman, Zachary Lottersberger, Francisca Takai, Hiroyuki Kibe, Tatsuya Gong, Yi Takai, Kaori Bianchi, Alessandro Zimmermann, Michal Durocher, Daniel de Lange, Titia Nature Article Resection of double-strand breaks (DSBs) dictates the choice between Homology-Directed Repair (HDR), which requires a 3′ overhang, and classical Non-Homologous End Joining (c-NHEJ), which can join unresected ends(1,2). BRCA1 mutant cancers show minimal DSB resection, rendering them HDR deficient and sensitive to PARP1 inhibitors (PARPi)(3–8). When BRCA1 is absent, DSB resection is thought to be prevented by 53BP1, Rif1, and the Rev7/Shld1/Shld2/Shld3 (Shieldin) complex and loss of these factors diminishes PARPi sensitivity(4,6–9). Here we address the mechanism by which 53BP1/Rif1/Shieldin regulate the generation of recombinogenic 3′ overhangs. We report that CST (Ctc1, Stn1, Ten1(10)), an RPA-like complex that functions as a Polymeraseα/primase accessory factor(11) is a downstream effector in the 53BP1 pathway. CST interacts with Shieldin and localizes with Polα to sites of DNA damage in a 53BP1- and Shieldin-dependent manner. Like loss of 53BP1/Rif1/Shieldin, CST depletion leads to increased resection. Furthermore, in BRCA1-deficient cells, CST blocks Rad51 loading and promotes PARPi efficacy. Finally, Polα inhibition diminishes the effect of PARPi in BRCA1-deficient cells. These data suggest that CST/Polα-mediated fill-in contributes to the control of DSB repair by 53BP1, Rif1, and Shieldin. 2018-07-18 2018-08 /pmc/articles/PMC6072559/ /pubmed/30022158 http://dx.doi.org/10.1038/s41586-018-0324-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Mirman, Zachary
Lottersberger, Francisca
Takai, Hiroyuki
Kibe, Tatsuya
Gong, Yi
Takai, Kaori
Bianchi, Alessandro
Zimmermann, Michal
Durocher, Daniel
de Lange, Titia
53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title_full 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title_fullStr 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title_full_unstemmed 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title_short 53BP1/Rif1/Shieldin counteract DSB resection through CST/Polα-dependent fill-in
title_sort 53bp1/rif1/shieldin counteract dsb resection through cst/polα-dependent fill-in
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6072559/
https://www.ncbi.nlm.nih.gov/pubmed/30022158
http://dx.doi.org/10.1038/s41586-018-0324-7
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