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ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair

ALC1/CHD1L is a member of the SNF2 superfamily of ATPases carrying a macrodomain that binds poly(ADP-ribose). Poly(ADP-ribose) polymerase (PARP) 1 and 2 synthesize poly(ADP-ribose) at DNA-strand cleavage sites, promoting base excision repair (BER). Although depletion of ALC1 causes increased sensiti...

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Autores principales: Tsuda, Masataka, Cho, Kosai, Ooka, Masato, Shimizu, Naoto, Watanabe, Reiko, Yasui, Akira, Nakazawa, Yuka, Ogi, Tomoo, Harada, Hiroshi, Agama, Keli, Nakamura, Jun, Asada, Ryuta, Fujiike, Haruna, Sakuma, Tetsushi, Yamamoto, Takashi, Murai, Junko, Hiraoka, Masahiro, Koike, Kaoru, Pommier, Yves, Takeda, Shunichi, Hirota, Kouji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5693467/
https://www.ncbi.nlm.nih.gov/pubmed/29149203
http://dx.doi.org/10.1371/journal.pone.0188320
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author Tsuda, Masataka
Cho, Kosai
Ooka, Masato
Shimizu, Naoto
Watanabe, Reiko
Yasui, Akira
Nakazawa, Yuka
Ogi, Tomoo
Harada, Hiroshi
Agama, Keli
Nakamura, Jun
Asada, Ryuta
Fujiike, Haruna
Sakuma, Tetsushi
Yamamoto, Takashi
Murai, Junko
Hiraoka, Masahiro
Koike, Kaoru
Pommier, Yves
Takeda, Shunichi
Hirota, Kouji
author_facet Tsuda, Masataka
Cho, Kosai
Ooka, Masato
Shimizu, Naoto
Watanabe, Reiko
Yasui, Akira
Nakazawa, Yuka
Ogi, Tomoo
Harada, Hiroshi
Agama, Keli
Nakamura, Jun
Asada, Ryuta
Fujiike, Haruna
Sakuma, Tetsushi
Yamamoto, Takashi
Murai, Junko
Hiraoka, Masahiro
Koike, Kaoru
Pommier, Yves
Takeda, Shunichi
Hirota, Kouji
author_sort Tsuda, Masataka
collection PubMed
description ALC1/CHD1L is a member of the SNF2 superfamily of ATPases carrying a macrodomain that binds poly(ADP-ribose). Poly(ADP-ribose) polymerase (PARP) 1 and 2 synthesize poly(ADP-ribose) at DNA-strand cleavage sites, promoting base excision repair (BER). Although depletion of ALC1 causes increased sensitivity to various DNA-damaging agents (H(2)O(2), UV, and phleomycin), the role played by ALC1 in BER has not yet been established. To explore this role, as well as the role of ALC1’s ATPase activity in BER, we disrupted the ALC1 gene and inserted the ATPase-dead (E165Q) mutation into the ALC1 gene in chicken DT40 cells, which do not express PARP2. The resulting ALC1(-/-) and ALC1(-/E165Q) cells displayed an indistinguishable hypersensitivity to methylmethane sulfonate (MMS), an alkylating agent, and to H(2)O(2), indicating that ATPase plays an essential role in the DNA-damage response. PARP1(-/-) and ALC1(-/-)/PARP1(-/-) cells exhibited a very similar sensitivity to MMS, suggesting that ALC1 and PARP1 collaborate in BER. Following pulse-exposure to H(2)O(2), PARP1(-/-) and ALC1(-/-)/PARP1(-/-) cells showed similarly delayed kinetics in the repair of single-strand breaks, which arise as BER intermediates. To ascertain ALC1’s role in BER in mammalian cells, we disrupted the ALC1 gene in human TK6 cells. Following exposure to MMS and to H(2)O(2), the ALC1(-/-) TK6 cell line showed a delay in single-strand-break repair. We therefore conclude that ALC1 plays a role in BER. Following exposure to H(2)O(2,) ALC1(-/-) cells showed compromised chromatin relaxation. We thus propose that ALC1 is a unique BER factor that functions in a chromatin context, most likely as a chromatin-remodeling enzyme.
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spelling pubmed-56934672017-11-30 ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair Tsuda, Masataka Cho, Kosai Ooka, Masato Shimizu, Naoto Watanabe, Reiko Yasui, Akira Nakazawa, Yuka Ogi, Tomoo Harada, Hiroshi Agama, Keli Nakamura, Jun Asada, Ryuta Fujiike, Haruna Sakuma, Tetsushi Yamamoto, Takashi Murai, Junko Hiraoka, Masahiro Koike, Kaoru Pommier, Yves Takeda, Shunichi Hirota, Kouji PLoS One Research Article ALC1/CHD1L is a member of the SNF2 superfamily of ATPases carrying a macrodomain that binds poly(ADP-ribose). Poly(ADP-ribose) polymerase (PARP) 1 and 2 synthesize poly(ADP-ribose) at DNA-strand cleavage sites, promoting base excision repair (BER). Although depletion of ALC1 causes increased sensitivity to various DNA-damaging agents (H(2)O(2), UV, and phleomycin), the role played by ALC1 in BER has not yet been established. To explore this role, as well as the role of ALC1’s ATPase activity in BER, we disrupted the ALC1 gene and inserted the ATPase-dead (E165Q) mutation into the ALC1 gene in chicken DT40 cells, which do not express PARP2. The resulting ALC1(-/-) and ALC1(-/E165Q) cells displayed an indistinguishable hypersensitivity to methylmethane sulfonate (MMS), an alkylating agent, and to H(2)O(2), indicating that ATPase plays an essential role in the DNA-damage response. PARP1(-/-) and ALC1(-/-)/PARP1(-/-) cells exhibited a very similar sensitivity to MMS, suggesting that ALC1 and PARP1 collaborate in BER. Following pulse-exposure to H(2)O(2), PARP1(-/-) and ALC1(-/-)/PARP1(-/-) cells showed similarly delayed kinetics in the repair of single-strand breaks, which arise as BER intermediates. To ascertain ALC1’s role in BER in mammalian cells, we disrupted the ALC1 gene in human TK6 cells. Following exposure to MMS and to H(2)O(2), the ALC1(-/-) TK6 cell line showed a delay in single-strand-break repair. We therefore conclude that ALC1 plays a role in BER. Following exposure to H(2)O(2,) ALC1(-/-) cells showed compromised chromatin relaxation. We thus propose that ALC1 is a unique BER factor that functions in a chromatin context, most likely as a chromatin-remodeling enzyme. Public Library of Science 2017-11-17 /pmc/articles/PMC5693467/ /pubmed/29149203 http://dx.doi.org/10.1371/journal.pone.0188320 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Tsuda, Masataka
Cho, Kosai
Ooka, Masato
Shimizu, Naoto
Watanabe, Reiko
Yasui, Akira
Nakazawa, Yuka
Ogi, Tomoo
Harada, Hiroshi
Agama, Keli
Nakamura, Jun
Asada, Ryuta
Fujiike, Haruna
Sakuma, Tetsushi
Yamamoto, Takashi
Murai, Junko
Hiraoka, Masahiro
Koike, Kaoru
Pommier, Yves
Takeda, Shunichi
Hirota, Kouji
ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title_full ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title_fullStr ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title_full_unstemmed ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title_short ALC1/CHD1L, a chromatin-remodeling enzyme, is required for efficient base excision repair
title_sort alc1/chd1l, a chromatin-remodeling enzyme, is required for efficient base excision repair
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5693467/
https://www.ncbi.nlm.nih.gov/pubmed/29149203
http://dx.doi.org/10.1371/journal.pone.0188320
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