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Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy

The “rejuvenating” effect of growth differentiation factor 11 (GDF11) is called into question recently, and its role, as well as plausible signaling mechanisms in liver senescence, is unclear. To overexpress or knockdown GDF11, aged male mice are injected with a single dose of adeno‐associated virus...

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Autores principales: Sun, Jian, Li, Ying, Yang, Xiao, Dong, Wei, Yang, Jiankun, Hu, Qi, Zhang, Cuntai, Fang, Haoshu, Liu, Anding
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761011/
https://www.ncbi.nlm.nih.gov/pubmed/34905649
http://dx.doi.org/10.1111/acel.13532
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author Sun, Jian
Li, Ying
Yang, Xiao
Dong, Wei
Yang, Jiankun
Hu, Qi
Zhang, Cuntai
Fang, Haoshu
Liu, Anding
author_facet Sun, Jian
Li, Ying
Yang, Xiao
Dong, Wei
Yang, Jiankun
Hu, Qi
Zhang, Cuntai
Fang, Haoshu
Liu, Anding
author_sort Sun, Jian
collection PubMed
description The “rejuvenating” effect of growth differentiation factor 11 (GDF11) is called into question recently, and its role, as well as plausible signaling mechanisms in liver senescence, is unclear. To overexpress or knockdown GDF11, aged male mice are injected with a single dose of adeno‐associated viruses‐GDF11 or adenovirus‐small hairpin RNA‐GDF11, respectively. GDF11 overexpression significantly accelerates liver senescence in aged mice, whereas GDF11 knockdown has opposite effects. Concomitantly, autophagic flux is impaired in livers from GDF11 overexpression mice. Conversely, GDF11 knockdown increases autophagic flux. Moreover, rapamycin successfully restores the impaired autophagic flux and alleviates liver senescence in GDF11 overexpression mice, while the GDF11 knockdown‐mediated benefits are abolished by the autophagy inhibitor bafilomycin A1. GDF11 leads to a drop in lysosomal biogenesis resulting in defective autophagic flux at autophagosome clearance step. Mechanistically, GDF11 significantly activates mammalian target of rapamycin complex 1 (mTORC1) and subsequently represses transcription factor EB (TFEB), a master regulator of lysosomal biogenesis and autophagy. Inhibition of mTORC1 or TFEB overexpression rescues the GDF11‐impaired autophagic flux and cellular senescence. Hepatocyte‐specific deletion of GDF11 does not alter serum GDF11 levels and liver senescence. Collectively, suppression of autophagic activity via mTORC1/TFEB signaling may be a critical molecular mechanism by which GDF11 exacerbates liver senescence. Rather than a “rejuvenating” agent, GDF11 may have a detrimental effect on liver senescence.
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spelling pubmed-87610112022-01-20 Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy Sun, Jian Li, Ying Yang, Xiao Dong, Wei Yang, Jiankun Hu, Qi Zhang, Cuntai Fang, Haoshu Liu, Anding Aging Cell Original Papers The “rejuvenating” effect of growth differentiation factor 11 (GDF11) is called into question recently, and its role, as well as plausible signaling mechanisms in liver senescence, is unclear. To overexpress or knockdown GDF11, aged male mice are injected with a single dose of adeno‐associated viruses‐GDF11 or adenovirus‐small hairpin RNA‐GDF11, respectively. GDF11 overexpression significantly accelerates liver senescence in aged mice, whereas GDF11 knockdown has opposite effects. Concomitantly, autophagic flux is impaired in livers from GDF11 overexpression mice. Conversely, GDF11 knockdown increases autophagic flux. Moreover, rapamycin successfully restores the impaired autophagic flux and alleviates liver senescence in GDF11 overexpression mice, while the GDF11 knockdown‐mediated benefits are abolished by the autophagy inhibitor bafilomycin A1. GDF11 leads to a drop in lysosomal biogenesis resulting in defective autophagic flux at autophagosome clearance step. Mechanistically, GDF11 significantly activates mammalian target of rapamycin complex 1 (mTORC1) and subsequently represses transcription factor EB (TFEB), a master regulator of lysosomal biogenesis and autophagy. Inhibition of mTORC1 or TFEB overexpression rescues the GDF11‐impaired autophagic flux and cellular senescence. Hepatocyte‐specific deletion of GDF11 does not alter serum GDF11 levels and liver senescence. Collectively, suppression of autophagic activity via mTORC1/TFEB signaling may be a critical molecular mechanism by which GDF11 exacerbates liver senescence. Rather than a “rejuvenating” agent, GDF11 may have a detrimental effect on liver senescence. John Wiley and Sons Inc. 2021-12-14 2022-01 /pmc/articles/PMC8761011/ /pubmed/34905649 http://dx.doi.org/10.1111/acel.13532 Text en © 2021 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Sun, Jian
Li, Ying
Yang, Xiao
Dong, Wei
Yang, Jiankun
Hu, Qi
Zhang, Cuntai
Fang, Haoshu
Liu, Anding
Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title_full Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title_fullStr Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title_full_unstemmed Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title_short Growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
title_sort growth differentiation factor 11 accelerates liver senescence through the inhibition of autophagy
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761011/
https://www.ncbi.nlm.nih.gov/pubmed/34905649
http://dx.doi.org/10.1111/acel.13532
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