Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals

Removal of the C. elegans germline substantially increases organismal lifespan. Here, Nakamura et al. show that the transcription factors MML-1 and MXL-2 coordinate this process in that they reduce TOR signalling and increase autophagy by regulating activity of HLH-30.

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Autores principales: Shuhei Nakamura, Özlem Karalay, Philipp S. Jäger, Makoto Horikawa, Corinna Klein, Kayo Nakamura, Christian Latza, Sven E. Templer, Christoph Dieterich, Adam Antebi
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/d64ac3f9db434a949312fa7d63fb441c
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spelling oai:doaj.org-article:d64ac3f9db434a949312fa7d63fb441c2021-12-02T14:38:55ZMondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals10.1038/ncomms109442041-1723https://doaj.org/article/d64ac3f9db434a949312fa7d63fb441c2016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10944https://doaj.org/toc/2041-1723Removal of the C. elegans germline substantially increases organismal lifespan. Here, Nakamura et al. show that the transcription factors MML-1 and MXL-2 coordinate this process in that they reduce TOR signalling and increase autophagy by regulating activity of HLH-30.Shuhei NakamuraÖzlem KaralayPhilipp S. JägerMakoto HorikawaCorinna KleinKayo NakamuraChristian LatzaSven E. TemplerChristoph DieterichAdam AntebiNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-15 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shuhei Nakamura
Özlem Karalay
Philipp S. Jäger
Makoto Horikawa
Corinna Klein
Kayo Nakamura
Christian Latza
Sven E. Templer
Christoph Dieterich
Adam Antebi
Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
description Removal of the C. elegans germline substantially increases organismal lifespan. Here, Nakamura et al. show that the transcription factors MML-1 and MXL-2 coordinate this process in that they reduce TOR signalling and increase autophagy by regulating activity of HLH-30.
format article
author Shuhei Nakamura
Özlem Karalay
Philipp S. Jäger
Makoto Horikawa
Corinna Klein
Kayo Nakamura
Christian Latza
Sven E. Templer
Christoph Dieterich
Adam Antebi
author_facet Shuhei Nakamura
Özlem Karalay
Philipp S. Jäger
Makoto Horikawa
Corinna Klein
Kayo Nakamura
Christian Latza
Sven E. Templer
Christoph Dieterich
Adam Antebi
author_sort Shuhei Nakamura
title Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
title_short Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
title_full Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
title_fullStr Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
title_full_unstemmed Mondo complexes regulate TFEB via TOR inhibition to promote longevity in response to gonadal signals
title_sort mondo complexes regulate tfeb via tor inhibition to promote longevity in response to gonadal signals
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/d64ac3f9db434a949312fa7d63fb441c
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