Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans

The molecular mechanism of axon regeneration after injury is poorly understood. Here the authors show that in C. elegans, the HIF-1 transcription factor induces ectopic synthesis of serotonin in severed ‘non-serotonergic’ neurons and that serotonin activates downstream signaling pathways leading to...

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Autores principales: Tanimul Alam, Hiroki Maruyama, Chun Li, Strahil Iv. Pastuhov, Paola Nix, Michael Bastiani, Naoki Hisamoto, Kunihiro Matsumoto
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/df74211fbd2e45be8c4c87f6e1c01ced
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spelling oai:doaj.org-article:df74211fbd2e45be8c4c87f6e1c01ced2021-12-02T16:57:02ZAxotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans10.1038/ncomms103882041-1723https://doaj.org/article/df74211fbd2e45be8c4c87f6e1c01ced2016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10388https://doaj.org/toc/2041-1723The molecular mechanism of axon regeneration after injury is poorly understood. Here the authors show that in C. elegans, the HIF-1 transcription factor induces ectopic synthesis of serotonin in severed ‘non-serotonergic’ neurons and that serotonin activates downstream signaling pathways leading to axon regeneration.Tanimul AlamHiroki MaruyamaChun LiStrahil Iv. PastuhovPaola NixMichael BastianiNaoki HisamotoKunihiro MatsumotoNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tanimul Alam
Hiroki Maruyama
Chun Li
Strahil Iv. Pastuhov
Paola Nix
Michael Bastiani
Naoki Hisamoto
Kunihiro Matsumoto
Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
description The molecular mechanism of axon regeneration after injury is poorly understood. Here the authors show that in C. elegans, the HIF-1 transcription factor induces ectopic synthesis of serotonin in severed ‘non-serotonergic’ neurons and that serotonin activates downstream signaling pathways leading to axon regeneration.
format article
author Tanimul Alam
Hiroki Maruyama
Chun Li
Strahil Iv. Pastuhov
Paola Nix
Michael Bastiani
Naoki Hisamoto
Kunihiro Matsumoto
author_facet Tanimul Alam
Hiroki Maruyama
Chun Li
Strahil Iv. Pastuhov
Paola Nix
Michael Bastiani
Naoki Hisamoto
Kunihiro Matsumoto
author_sort Tanimul Alam
title Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
title_short Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
title_full Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
title_fullStr Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
title_full_unstemmed Axotomy-induced HIF-serotonin signalling axis promotes axon regeneration in C. elegans
title_sort axotomy-induced hif-serotonin signalling axis promotes axon regeneration in c. elegans
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/df74211fbd2e45be8c4c87f6e1c01ced
work_keys_str_mv AT tanimulalam axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT hirokimaruyama axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT chunli axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT strahilivpastuhov axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT paolanix axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT michaelbastiani axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT naokihisamoto axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
AT kunihiromatsumoto axotomyinducedhifserotoninsignallingaxispromotesaxonregenerationincelegans
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