A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells

Senescent cells can influence the tumour microenvironment by secreting immunomodulatory factors and are thus a therapeutic target. Here, the authors identify a compound that degrades BET leading to DNA damage and activation of autophagy and a reduction in tumour growth.

Guardado en:
Detalles Bibliográficos
Autores principales: Masahiro Wakita, Akiko Takahashi, Osamu Sano, Tze Mun Loo, Yoshinori Imai, Megumi Narukawa, Hidehisa Iwata, Tatsuyuki Matsudaira, Shimpei Kawamoto, Naoko Ohtani, Tamotsu Yoshimori, Eiji Hara
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/cd78cc2a032e468c95cf625f4e739929
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:cd78cc2a032e468c95cf625f4e739929
record_format dspace
spelling oai:doaj.org-article:cd78cc2a032e468c95cf625f4e7399292021-12-02T17:31:56ZA BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells10.1038/s41467-020-15719-62041-1723https://doaj.org/article/cd78cc2a032e468c95cf625f4e7399292020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15719-6https://doaj.org/toc/2041-1723Senescent cells can influence the tumour microenvironment by secreting immunomodulatory factors and are thus a therapeutic target. Here, the authors identify a compound that degrades BET leading to DNA damage and activation of autophagy and a reduction in tumour growth.Masahiro WakitaAkiko TakahashiOsamu SanoTze Mun LooYoshinori ImaiMegumi NarukawaHidehisa IwataTatsuyuki MatsudairaShimpei KawamotoNaoko OhtaniTamotsu YoshimoriEiji HaraNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-13 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Masahiro Wakita
Akiko Takahashi
Osamu Sano
Tze Mun Loo
Yoshinori Imai
Megumi Narukawa
Hidehisa Iwata
Tatsuyuki Matsudaira
Shimpei Kawamoto
Naoko Ohtani
Tamotsu Yoshimori
Eiji Hara
A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
description Senescent cells can influence the tumour microenvironment by secreting immunomodulatory factors and are thus a therapeutic target. Here, the authors identify a compound that degrades BET leading to DNA damage and activation of autophagy and a reduction in tumour growth.
format article
author Masahiro Wakita
Akiko Takahashi
Osamu Sano
Tze Mun Loo
Yoshinori Imai
Megumi Narukawa
Hidehisa Iwata
Tatsuyuki Matsudaira
Shimpei Kawamoto
Naoko Ohtani
Tamotsu Yoshimori
Eiji Hara
author_facet Masahiro Wakita
Akiko Takahashi
Osamu Sano
Tze Mun Loo
Yoshinori Imai
Megumi Narukawa
Hidehisa Iwata
Tatsuyuki Matsudaira
Shimpei Kawamoto
Naoko Ohtani
Tamotsu Yoshimori
Eiji Hara
author_sort Masahiro Wakita
title A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
title_short A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
title_full A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
title_fullStr A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
title_full_unstemmed A BET family protein degrader provokes senolysis by targeting NHEJ and autophagy in senescent cells
title_sort bet family protein degrader provokes senolysis by targeting nhej and autophagy in senescent cells
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/cd78cc2a032e468c95cf625f4e739929
work_keys_str_mv AT masahirowakita abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT akikotakahashi abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT osamusano abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tzemunloo abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT yoshinoriimai abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT meguminarukawa abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT hidehisaiwata abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tatsuyukimatsudaira abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT shimpeikawamoto abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT naokoohtani abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tamotsuyoshimori abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT eijihara abetfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT masahirowakita betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT akikotakahashi betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT osamusano betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tzemunloo betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT yoshinoriimai betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT meguminarukawa betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT hidehisaiwata betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tatsuyukimatsudaira betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT shimpeikawamoto betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT naokoohtani betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT tamotsuyoshimori betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
AT eijihara betfamilyproteindegraderprovokessenolysisbytargetingnhejandautophagyinsenescentcells
_version_ 1718380457255501824