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Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity

Homologous recombination (HR) provides an efficient mechanism for error-free repair of DNA double-strand breaks (DSBs). However, HR can be also harmful as inappropriate or untimely HR events can give rise to lethal recombination intermediates and chromosome rearrangements. A critical step of HR is t...

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Autores principales: Schwendener, Sybille, Raynard, Steven, Paliwal, Shreya, Cheng, Anita, Kanagaraj, Radhakrishnan, Shevelev, Igor, Stark, Jeremy M., Sung, Patrick, Janscak, Pavel
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2871440/
https://www.ncbi.nlm.nih.gov/pubmed/20348101
http://dx.doi.org/10.1074/jbc.M110.110478
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author Schwendener, Sybille
Raynard, Steven
Paliwal, Shreya
Cheng, Anita
Kanagaraj, Radhakrishnan
Shevelev, Igor
Stark, Jeremy M.
Sung, Patrick
Janscak, Pavel
author_facet Schwendener, Sybille
Raynard, Steven
Paliwal, Shreya
Cheng, Anita
Kanagaraj, Radhakrishnan
Shevelev, Igor
Stark, Jeremy M.
Sung, Patrick
Janscak, Pavel
author_sort Schwendener, Sybille
collection PubMed
description Homologous recombination (HR) provides an efficient mechanism for error-free repair of DNA double-strand breaks (DSBs). However, HR can be also harmful as inappropriate or untimely HR events can give rise to lethal recombination intermediates and chromosome rearrangements. A critical step of HR is the formation of a RAD51 filament on single-stranded (ss)DNA, which mediates the invasion of a homologous DNA molecule. In mammalian cells, several DNA helicases have been implicated in the regulation of this process. RECQ5, a member of the RecQ family of DNA helicases, interacts physically with the RAD51 recombinase and disrupts RAD51 presynaptic filaments in a reaction dependent on ATP hydrolysis. Here, we have precisely mapped the RAD51-interacting domain of RECQ5 and generated mutants that fail to interact with RAD51. We show that although these mutants retain normal ATPase activity, they are impaired in their ability to displace RAD51 from ssDNA. Moreover, we show that ablation of RECQ5-RAD51 complex formation by a point mutation alleviates the inhibitory effect of RECQ5 on HR-mediated DSB repair. These findings provide support for the proposal that interaction with RAD51 is critical for the anti-recombinase attribute of RECQ5.
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spelling pubmed-28714402010-05-18 Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity Schwendener, Sybille Raynard, Steven Paliwal, Shreya Cheng, Anita Kanagaraj, Radhakrishnan Shevelev, Igor Stark, Jeremy M. Sung, Patrick Janscak, Pavel J Biol Chem Enzymology Homologous recombination (HR) provides an efficient mechanism for error-free repair of DNA double-strand breaks (DSBs). However, HR can be also harmful as inappropriate or untimely HR events can give rise to lethal recombination intermediates and chromosome rearrangements. A critical step of HR is the formation of a RAD51 filament on single-stranded (ss)DNA, which mediates the invasion of a homologous DNA molecule. In mammalian cells, several DNA helicases have been implicated in the regulation of this process. RECQ5, a member of the RecQ family of DNA helicases, interacts physically with the RAD51 recombinase and disrupts RAD51 presynaptic filaments in a reaction dependent on ATP hydrolysis. Here, we have precisely mapped the RAD51-interacting domain of RECQ5 and generated mutants that fail to interact with RAD51. We show that although these mutants retain normal ATPase activity, they are impaired in their ability to displace RAD51 from ssDNA. Moreover, we show that ablation of RECQ5-RAD51 complex formation by a point mutation alleviates the inhibitory effect of RECQ5 on HR-mediated DSB repair. These findings provide support for the proposal that interaction with RAD51 is critical for the anti-recombinase attribute of RECQ5. American Society for Biochemistry and Molecular Biology 2010-05-21 2010-03-25 /pmc/articles/PMC2871440/ /pubmed/20348101 http://dx.doi.org/10.1074/jbc.M110.110478 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Enzymology
Schwendener, Sybille
Raynard, Steven
Paliwal, Shreya
Cheng, Anita
Kanagaraj, Radhakrishnan
Shevelev, Igor
Stark, Jeremy M.
Sung, Patrick
Janscak, Pavel
Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title_full Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title_fullStr Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title_full_unstemmed Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title_short Physical Interaction of RECQ5 Helicase with RAD51 Facilitates Its Anti-recombinase Activity
title_sort physical interaction of recq5 helicase with rad51 facilitates its anti-recombinase activity
topic Enzymology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2871440/
https://www.ncbi.nlm.nih.gov/pubmed/20348101
http://dx.doi.org/10.1074/jbc.M110.110478
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