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TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress

Aging is associated with an inevitable and universal loss of cell homeostasis and restricts an organism's lifespan by an increased susceptibility to diseases and tissue degeneration. The glucose uptake associated with producing energy for cell survival is one of the major causes of ROS producti...

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Autores principales: Huy, Hangsak, Song, Hae Young, Kim, Mi Jeong, Kim, Won Sam, Kim, Dong Oh, Byun, Jae‐Eun, Lee, Jungwoon, Park, Young‐Jun, Kim, Tae‐Don, Yoon, Suk Ran, Choi, Eun‐Ji, Lee, Chul‐Ho, Noh, Ji‐Yoon, Jung, Haiyoung, Choi, Inpyo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260918/
https://www.ncbi.nlm.nih.gov/pubmed/30168649
http://dx.doi.org/10.1111/acel.12836
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author Huy, Hangsak
Song, Hae Young
Kim, Mi Jeong
Kim, Won Sam
Kim, Dong Oh
Byun, Jae‐Eun
Lee, Jungwoon
Park, Young‐Jun
Kim, Tae‐Don
Yoon, Suk Ran
Choi, Eun‐Ji
Lee, Chul‐Ho
Noh, Ji‐Yoon
Jung, Haiyoung
Choi, Inpyo
author_facet Huy, Hangsak
Song, Hae Young
Kim, Mi Jeong
Kim, Won Sam
Kim, Dong Oh
Byun, Jae‐Eun
Lee, Jungwoon
Park, Young‐Jun
Kim, Tae‐Don
Yoon, Suk Ran
Choi, Eun‐Ji
Lee, Chul‐Ho
Noh, Ji‐Yoon
Jung, Haiyoung
Choi, Inpyo
author_sort Huy, Hangsak
collection PubMed
description Aging is associated with an inevitable and universal loss of cell homeostasis and restricts an organism's lifespan by an increased susceptibility to diseases and tissue degeneration. The glucose uptake associated with producing energy for cell survival is one of the major causes of ROS production under physiological conditions. However, the overall mechanisms by which glucose uptake results in cellular senescence remain mysterious. In this study, we found that TXNIP deficiency accelerated the senescent phenotypes of MEF cells under high glucose condition. TXNIP(‐/‐) MEF cells showed greater induced glucose uptake and ROS levels than wild‐type cells, and N‐acetylcysteine (NAC) treatment rescued the cellular senescence of TXNIP(‐/‐) MEF cells. Interestingly, TXNIP(‐/‐) MEF cells showed continuous activation of AKT during long‐term subculture, and AKT signaling inhibition completely blocked the cellular senescence of TXNIP(‐/‐) MEF cells. In addition, we found that TXNIP interacted with AKT via the PH domain of AKT, and their interaction was increased by high glucose or H(2)O(2) treatment. The inhibition of AKT activity by TXNIP was confirmed using western blotting and an in vitro kinase assay. TXNIP deficiency in type 1 diabetes mice (Akita) efficiently decreased the blood glucose levels and finally increased mouse survival. However, in normal mice, TXNIP deficiency induced metabolic aging of mice and cellular senescence of kidney cells by inducing AKT activity and aging‐associated gene expression. Altogether, these results suggest that TXNIP regulates cellular senescence by inhibiting AKT pathways via a direct interaction under conditions of glucose‐derived metabolic stress.
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spelling pubmed-62609182018-12-01 TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress Huy, Hangsak Song, Hae Young Kim, Mi Jeong Kim, Won Sam Kim, Dong Oh Byun, Jae‐Eun Lee, Jungwoon Park, Young‐Jun Kim, Tae‐Don Yoon, Suk Ran Choi, Eun‐Ji Lee, Chul‐Ho Noh, Ji‐Yoon Jung, Haiyoung Choi, Inpyo Aging Cell Original Papers Aging is associated with an inevitable and universal loss of cell homeostasis and restricts an organism's lifespan by an increased susceptibility to diseases and tissue degeneration. The glucose uptake associated with producing energy for cell survival is one of the major causes of ROS production under physiological conditions. However, the overall mechanisms by which glucose uptake results in cellular senescence remain mysterious. In this study, we found that TXNIP deficiency accelerated the senescent phenotypes of MEF cells under high glucose condition. TXNIP(‐/‐) MEF cells showed greater induced glucose uptake and ROS levels than wild‐type cells, and N‐acetylcysteine (NAC) treatment rescued the cellular senescence of TXNIP(‐/‐) MEF cells. Interestingly, TXNIP(‐/‐) MEF cells showed continuous activation of AKT during long‐term subculture, and AKT signaling inhibition completely blocked the cellular senescence of TXNIP(‐/‐) MEF cells. In addition, we found that TXNIP interacted with AKT via the PH domain of AKT, and their interaction was increased by high glucose or H(2)O(2) treatment. The inhibition of AKT activity by TXNIP was confirmed using western blotting and an in vitro kinase assay. TXNIP deficiency in type 1 diabetes mice (Akita) efficiently decreased the blood glucose levels and finally increased mouse survival. However, in normal mice, TXNIP deficiency induced metabolic aging of mice and cellular senescence of kidney cells by inducing AKT activity and aging‐associated gene expression. Altogether, these results suggest that TXNIP regulates cellular senescence by inhibiting AKT pathways via a direct interaction under conditions of glucose‐derived metabolic stress. John Wiley and Sons Inc. 2018-08-31 2018-12 /pmc/articles/PMC6260918/ /pubmed/30168649 http://dx.doi.org/10.1111/acel.12836 Text en © 2018 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 Papers
Huy, Hangsak
Song, Hae Young
Kim, Mi Jeong
Kim, Won Sam
Kim, Dong Oh
Byun, Jae‐Eun
Lee, Jungwoon
Park, Young‐Jun
Kim, Tae‐Don
Yoon, Suk Ran
Choi, Eun‐Ji
Lee, Chul‐Ho
Noh, Ji‐Yoon
Jung, Haiyoung
Choi, Inpyo
TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title_full TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title_fullStr TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title_full_unstemmed TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title_short TXNIP regulates AKT‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
title_sort txnip regulates akt‐mediated cellular senescence by direct interaction under glucose‐mediated metabolic stress
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260918/
https://www.ncbi.nlm.nih.gov/pubmed/30168649
http://dx.doi.org/10.1111/acel.12836
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