Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation

<p>Abstract</p> <p>Background</p> <p>MRE11 is an important nuclease which functions in the end-resection step of homologous recombination (HR) repair of DNA double-strand breaks (DSBs). As MRE11-deficient ATLD cells exhibit hyper radio-sensitivity and impaired DSB repai...

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Main Authors: Ohba Reiko, Ota Yosuke, Kato Akihiro, Kobayashi Junya, Komatsu Kenshi
Format: Article
Language:English
Published: BMC 2010-02-01
Series:Molecular Cancer
Online Access:http://www.molecular-cancer.com/content/9/1/34
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spelling doaj-54379b598bf54244a6203cc6c11995272020-11-25T00:31:50ZengBMCMolecular Cancer1476-45982010-02-01913410.1186/1476-4598-9-34Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylationOhba ReikoOta YosukeKato AkihiroKobayashi JunyaKomatsu Kenshi<p>Abstract</p> <p>Background</p> <p>MRE11 is an important nuclease which functions in the end-resection step of homologous recombination (HR) repair of DNA double-strand breaks (DSBs). As MRE11-deficient ATLD cells exhibit hyper radio-sensitivity and impaired DSB repair, MRE11 inhibitors could possibly function as potent radio-sensitizers. Therefore, we investigated whether a bisbenzamidine derivative, pentamidine, which can inhibit endoexonuclease activity, might influence DSB-induced damage responses <it>via </it>inhibition of MRE11.</p> <p>Results</p> <p>We first clarified that pentamidine inhibited MRE11 nuclease activity and also reduced ATM kinase activity in vitro. Pentamidine increased the radio-sensitivity of HeLa cells, suggesting that this compound could possibly influence DNA damage response factors in vivo. Indeed, we found that pentamidine reduced the accumulation of γ-H2AX, NBS1 and phospho-ATM at the sites of DSBs. Furthermore, pentamidine decreased HR activity <it>in vivo</it>. Pentamidine was found to inhibit the acetylation of histone H2A which could contribute both to inhibition of IR-induced focus formation and HR repair. These results suggest that pentamidine might exert its effects by inhibiting histone acetyltransferases. We found that pentamidine repressed the activity of Tip60 acetyltransferase which is known to acetylate histone H2A and that knockdown of Tip60 by siRNA reduced HR activity.</p> <p>Conclusion</p> <p>These results indicate that inhibition of Tip60 as well as hMRE11 nuclease by pentamidine underlies the radiosensitizing effects of this compound making it an excellent sensitizer for radiotherapy or chemotherapy.</p> http://www.molecular-cancer.com/content/9/1/34
collection DOAJ
language English
format Article
sources DOAJ
author Ohba Reiko
Ota Yosuke
Kato Akihiro
Kobayashi Junya
Komatsu Kenshi
spellingShingle Ohba Reiko
Ota Yosuke
Kato Akihiro
Kobayashi Junya
Komatsu Kenshi
Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
Molecular Cancer
author_facet Ohba Reiko
Ota Yosuke
Kato Akihiro
Kobayashi Junya
Komatsu Kenshi
author_sort Ohba Reiko
title Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
title_short Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
title_full Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
title_fullStr Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
title_full_unstemmed Bisbenzamidine derivative, pentamidine represses DNA damage response through inhibition of histone H2A acetylation
title_sort bisbenzamidine derivative, pentamidine represses dna damage response through inhibition of histone h2a acetylation
publisher BMC
series Molecular Cancer
issn 1476-4598
publishDate 2010-02-01
description <p>Abstract</p> <p>Background</p> <p>MRE11 is an important nuclease which functions in the end-resection step of homologous recombination (HR) repair of DNA double-strand breaks (DSBs). As MRE11-deficient ATLD cells exhibit hyper radio-sensitivity and impaired DSB repair, MRE11 inhibitors could possibly function as potent radio-sensitizers. Therefore, we investigated whether a bisbenzamidine derivative, pentamidine, which can inhibit endoexonuclease activity, might influence DSB-induced damage responses <it>via </it>inhibition of MRE11.</p> <p>Results</p> <p>We first clarified that pentamidine inhibited MRE11 nuclease activity and also reduced ATM kinase activity in vitro. Pentamidine increased the radio-sensitivity of HeLa cells, suggesting that this compound could possibly influence DNA damage response factors in vivo. Indeed, we found that pentamidine reduced the accumulation of γ-H2AX, NBS1 and phospho-ATM at the sites of DSBs. Furthermore, pentamidine decreased HR activity <it>in vivo</it>. Pentamidine was found to inhibit the acetylation of histone H2A which could contribute both to inhibition of IR-induced focus formation and HR repair. These results suggest that pentamidine might exert its effects by inhibiting histone acetyltransferases. We found that pentamidine repressed the activity of Tip60 acetyltransferase which is known to acetylate histone H2A and that knockdown of Tip60 by siRNA reduced HR activity.</p> <p>Conclusion</p> <p>These results indicate that inhibition of Tip60 as well as hMRE11 nuclease by pentamidine underlies the radiosensitizing effects of this compound making it an excellent sensitizer for radiotherapy or chemotherapy.</p>
url http://www.molecular-cancer.com/content/9/1/34
work_keys_str_mv AT ohbareiko bisbenzamidinederivativepentamidinerepressesdnadamageresponsethroughinhibitionofhistoneh2aacetylation
AT otayosuke bisbenzamidinederivativepentamidinerepressesdnadamageresponsethroughinhibitionofhistoneh2aacetylation
AT katoakihiro bisbenzamidinederivativepentamidinerepressesdnadamageresponsethroughinhibitionofhistoneh2aacetylation
AT kobayashijunya bisbenzamidinederivativepentamidinerepressesdnadamageresponsethroughinhibitionofhistoneh2aacetylation
AT komatsukenshi bisbenzamidinederivativepentamidinerepressesdnadamageresponsethroughinhibitionofhistoneh2aacetylation
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