Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1

A compound from Thai black ginger, KPMF-8, was previously found to dramatically promote activation of SIRT1 towards a peptide substrate. Zhang et al. now show that KPMF-8 can be taken up by cells through culture media, directly interacts with SIRT1, and promotes its deacetylation activity toward nat...

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Autores principales: Mimin Zhang, Peng Lu, Tohru Terada, Miaomiao Sui, Haruka Furuta, Kilico Iida, Yukie Katayama, Yi Lu, Ken Okamoto, Michio Suzuki, Tomiko Asakura, Kentaro Shimizu, Fumihiko Hakuno, Shin-Ichiro Takahashi, Norimoto Shimada, Jinwei Yang, Tsutomu Ishikawa, Jin Tatsuzaki, Koji Nagata
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/5a67ff013a7841da9cbb1ba0d1000592
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spelling oai:doaj.org-article:5a67ff013a7841da9cbb1ba0d10005922021-12-02T14:21:58ZQuercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT110.1038/s42003-021-01705-12399-3642https://doaj.org/article/5a67ff013a7841da9cbb1ba0d10005922021-02-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-01705-1https://doaj.org/toc/2399-3642A compound from Thai black ginger, KPMF-8, was previously found to dramatically promote activation of SIRT1 towards a peptide substrate. Zhang et al. now show that KPMF-8 can be taken up by cells through culture media, directly interacts with SIRT1, and promotes its deacetylation activity toward native substrate more effectively than resveratrol.Mimin ZhangPeng LuTohru TeradaMiaomiao SuiHaruka FurutaKilico IidaYukie KatayamaYi LuKen OkamotoMichio SuzukiTomiko AsakuraKentaro ShimizuFumihiko HakunoShin-Ichiro TakahashiNorimoto ShimadaJinwei YangTsutomu IshikawaJin TatsuzakiKoji NagataNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Mimin Zhang
Peng Lu
Tohru Terada
Miaomiao Sui
Haruka Furuta
Kilico Iida
Yukie Katayama
Yi Lu
Ken Okamoto
Michio Suzuki
Tomiko Asakura
Kentaro Shimizu
Fumihiko Hakuno
Shin-Ichiro Takahashi
Norimoto Shimada
Jinwei Yang
Tsutomu Ishikawa
Jin Tatsuzaki
Koji Nagata
Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
description A compound from Thai black ginger, KPMF-8, was previously found to dramatically promote activation of SIRT1 towards a peptide substrate. Zhang et al. now show that KPMF-8 can be taken up by cells through culture media, directly interacts with SIRT1, and promotes its deacetylation activity toward native substrate more effectively than resveratrol.
format article
author Mimin Zhang
Peng Lu
Tohru Terada
Miaomiao Sui
Haruka Furuta
Kilico Iida
Yukie Katayama
Yi Lu
Ken Okamoto
Michio Suzuki
Tomiko Asakura
Kentaro Shimizu
Fumihiko Hakuno
Shin-Ichiro Takahashi
Norimoto Shimada
Jinwei Yang
Tsutomu Ishikawa
Jin Tatsuzaki
Koji Nagata
author_facet Mimin Zhang
Peng Lu
Tohru Terada
Miaomiao Sui
Haruka Furuta
Kilico Iida
Yukie Katayama
Yi Lu
Ken Okamoto
Michio Suzuki
Tomiko Asakura
Kentaro Shimizu
Fumihiko Hakuno
Shin-Ichiro Takahashi
Norimoto Shimada
Jinwei Yang
Tsutomu Ishikawa
Jin Tatsuzaki
Koji Nagata
author_sort Mimin Zhang
title Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
title_short Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
title_full Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
title_fullStr Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
title_full_unstemmed Quercetin 3,5,7,3′,4′-pentamethyl ether from Kaempferia parviflora directly and effectively activates human SIRT1
title_sort quercetin 3,5,7,3′,4′-pentamethyl ether from kaempferia parviflora directly and effectively activates human sirt1
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/5a67ff013a7841da9cbb1ba0d1000592
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