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HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy

Senescence in stem cells, which occurs as a consequence of chronic responses to the environment, defines the capacity of stem cells for proliferation and differentiation as well as their potential for tissue regeneration and homeostasis maintenance. Although stem cells reside under low oxygen pressu...

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Autores principales: Kim, Chul, Park, Ji‐Min, Song, Youngsook, Kim, Sunghoon, Moon, Jisook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413650/
https://www.ncbi.nlm.nih.gov/pubmed/30706629
http://dx.doi.org/10.1111/acel.12909
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author Kim, Chul
Park, Ji‐Min
Song, Youngsook
Kim, Sunghoon
Moon, Jisook
author_facet Kim, Chul
Park, Ji‐Min
Song, Youngsook
Kim, Sunghoon
Moon, Jisook
author_sort Kim, Chul
collection PubMed
description Senescence in stem cells, which occurs as a consequence of chronic responses to the environment, defines the capacity of stem cells for proliferation and differentiation as well as their potential for tissue regeneration and homeostasis maintenance. Although stem cells reside under low oxygen pressure and the availability of oxygen is known to be a crucial determinant in their fate, the key modulators in stem cell aging and the underlying mechanism have yet to be unraveled. Human placenta‐derived mesenchymal stem cells (hpMSCs) were cultured under hypoxia (3% O(2)) or normoxia (21% O(2)) to investigate the key factors that regulate stem cell senescence under hypoxic conditions. RNA sequencing results suggested that the expression of aminoacyl‐tRNA synthetase‐interacting multifunctional protein 3 (AIMP3, EEF1E1), an aging inducer, in the hpMSCs was dramatically repressed under hypoxia with concurrent suppression of the aging marker p16(INK4a). The hpMSCs that overexpressed AIMP3 under hypoxic conditions displayed significantly decreased proliferation and fewer stem cell characteristics, whereas the downregulation of AIMP3 ameliorated the age‐related senescence of MSCs. Consistent with the results of the hpMSCs, MSCs isolated from the adipose tissue of AIMP3‐overexpressing mice exhibited decreased stem cell functions. Interestingly, AIMP3‐induced senescence is negatively regulated by hypoxia‐inducible factor 1α (HIF1α) and positively regulated by Notch3. Furthermore, we showed that AIMP3 enhanced mitochondrial respiration and suppressed autophagic activity, indicating that the AIMP3‐associated modulation of metabolism and autophagy is a key mechanism in the senescence of stem cells and further suggesting a novel target for interventions against aging.
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spelling pubmed-64136502019-04-01 HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy Kim, Chul Park, Ji‐Min Song, Youngsook Kim, Sunghoon Moon, Jisook Aging Cell Original Paper Senescence in stem cells, which occurs as a consequence of chronic responses to the environment, defines the capacity of stem cells for proliferation and differentiation as well as their potential for tissue regeneration and homeostasis maintenance. Although stem cells reside under low oxygen pressure and the availability of oxygen is known to be a crucial determinant in their fate, the key modulators in stem cell aging and the underlying mechanism have yet to be unraveled. Human placenta‐derived mesenchymal stem cells (hpMSCs) were cultured under hypoxia (3% O(2)) or normoxia (21% O(2)) to investigate the key factors that regulate stem cell senescence under hypoxic conditions. RNA sequencing results suggested that the expression of aminoacyl‐tRNA synthetase‐interacting multifunctional protein 3 (AIMP3, EEF1E1), an aging inducer, in the hpMSCs was dramatically repressed under hypoxia with concurrent suppression of the aging marker p16(INK4a). The hpMSCs that overexpressed AIMP3 under hypoxic conditions displayed significantly decreased proliferation and fewer stem cell characteristics, whereas the downregulation of AIMP3 ameliorated the age‐related senescence of MSCs. Consistent with the results of the hpMSCs, MSCs isolated from the adipose tissue of AIMP3‐overexpressing mice exhibited decreased stem cell functions. Interestingly, AIMP3‐induced senescence is negatively regulated by hypoxia‐inducible factor 1α (HIF1α) and positively regulated by Notch3. Furthermore, we showed that AIMP3 enhanced mitochondrial respiration and suppressed autophagic activity, indicating that the AIMP3‐associated modulation of metabolism and autophagy is a key mechanism in the senescence of stem cells and further suggesting a novel target for interventions against aging. John Wiley and Sons Inc. 2019-01-31 2019-04 /pmc/articles/PMC6413650/ /pubmed/30706629 http://dx.doi.org/10.1111/acel.12909 Text en © 2019 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://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 Paper
Kim, Chul
Park, Ji‐Min
Song, Youngsook
Kim, Sunghoon
Moon, Jisook
HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title_full HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title_fullStr HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title_full_unstemmed HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title_short HIF1α‐mediated AIMP3 suppression delays stem cell aging via the induction of autophagy
title_sort hif1α‐mediated aimp3 suppression delays stem cell aging via the induction of autophagy
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413650/
https://www.ncbi.nlm.nih.gov/pubmed/30706629
http://dx.doi.org/10.1111/acel.12909
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