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Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells

Sirtuin protein family member 3 (Sirt3) has been suggested as a positive regulator in alleviating oxidative stress by acting on the mitochondrial antioxidant machinery in solid tumors; however, its role and regulation in hematological malignancies has been poorly understood. Here, we show that contr...

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Autores principales: Fang, Yixuan, Wang, Jian, Xu, Li, Cao, Yan, Xu, Fei, Yan, Lili, Nie, Meilan, Yuan, Na, Zhang, Suping, Zhao, Ruijin, Wang, Hongbin, Wu, Mengyin, Zhang, Xiaoying, Wang, Jianrong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5094955/
https://www.ncbi.nlm.nih.gov/pubmed/27232755
http://dx.doi.org/10.18632/oncotarget.9592
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author Fang, Yixuan
Wang, Jian
Xu, Li
Cao, Yan
Xu, Fei
Yan, Lili
Nie, Meilan
Yuan, Na
Zhang, Suping
Zhao, Ruijin
Wang, Hongbin
Wu, Mengyin
Zhang, Xiaoying
Wang, Jianrong
author_facet Fang, Yixuan
Wang, Jian
Xu, Li
Cao, Yan
Xu, Fei
Yan, Lili
Nie, Meilan
Yuan, Na
Zhang, Suping
Zhao, Ruijin
Wang, Hongbin
Wu, Mengyin
Zhang, Xiaoying
Wang, Jianrong
author_sort Fang, Yixuan
collection PubMed
description Sirtuin protein family member 3 (Sirt3) has been suggested as a positive regulator in alleviating oxidative stress by acting on the mitochondrial antioxidant machinery in solid tumors; however, its role and regulation in hematological malignancies has been poorly understood. Here, we show that contrary to what has been reported in solid tumors, in K562 leukemia cells elevated Sirt3 was associated with mitochondrial stress, and depletion of Sirt3 decreased reactive oxygen species (ROS) generation and lipid oxidation, but increased the ratio of reduced glutathione (GSH) to oxidized glutathione (GSSG), suggesting an opposite role of Sirt3 in regulating oxidative stress in the leukemia cells. Notably, loss of autophagy by deletion of autophagy essential gene or by pharmacological inhibition on autophagic degradation caused a significant accumulation of Sirt3. However, induced activation of autophagy did not cause autophagic degradation of Sirt3. Furthermore, inhibiting proteasome activity accumulated Sirt3 in autophagy-intact but not autophagy-defective cells, and disrupting functional autophagy either genetically or pharmacologically caused significantly less ubiquitination of Sirt3. Therefore, our data suggest that basal but not enhanced autophagy activity maintains ubiquitination-proteasomal degradation of Sirt3 to limit lipid oxidative stress, representing an adaptive mechanism by which autophagy, in collaboration with the ubiquitination-proteasomal system, controls oxidative stress by controlling the levels of certain proteins in K562 leukemia cells.
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spelling pubmed-50949552016-11-22 Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells Fang, Yixuan Wang, Jian Xu, Li Cao, Yan Xu, Fei Yan, Lili Nie, Meilan Yuan, Na Zhang, Suping Zhao, Ruijin Wang, Hongbin Wu, Mengyin Zhang, Xiaoying Wang, Jianrong Oncotarget Research Paper: Autophagy and Cell Death Sirtuin protein family member 3 (Sirt3) has been suggested as a positive regulator in alleviating oxidative stress by acting on the mitochondrial antioxidant machinery in solid tumors; however, its role and regulation in hematological malignancies has been poorly understood. Here, we show that contrary to what has been reported in solid tumors, in K562 leukemia cells elevated Sirt3 was associated with mitochondrial stress, and depletion of Sirt3 decreased reactive oxygen species (ROS) generation and lipid oxidation, but increased the ratio of reduced glutathione (GSH) to oxidized glutathione (GSSG), suggesting an opposite role of Sirt3 in regulating oxidative stress in the leukemia cells. Notably, loss of autophagy by deletion of autophagy essential gene or by pharmacological inhibition on autophagic degradation caused a significant accumulation of Sirt3. However, induced activation of autophagy did not cause autophagic degradation of Sirt3. Furthermore, inhibiting proteasome activity accumulated Sirt3 in autophagy-intact but not autophagy-defective cells, and disrupting functional autophagy either genetically or pharmacologically caused significantly less ubiquitination of Sirt3. Therefore, our data suggest that basal but not enhanced autophagy activity maintains ubiquitination-proteasomal degradation of Sirt3 to limit lipid oxidative stress, representing an adaptive mechanism by which autophagy, in collaboration with the ubiquitination-proteasomal system, controls oxidative stress by controlling the levels of certain proteins in K562 leukemia cells. Impact Journals LLC 2016-05-25 /pmc/articles/PMC5094955/ /pubmed/27232755 http://dx.doi.org/10.18632/oncotarget.9592 Text en Copyright: © 2016 Fang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Autophagy and Cell Death
Fang, Yixuan
Wang, Jian
Xu, Li
Cao, Yan
Xu, Fei
Yan, Lili
Nie, Meilan
Yuan, Na
Zhang, Suping
Zhao, Ruijin
Wang, Hongbin
Wu, Mengyin
Zhang, Xiaoying
Wang, Jianrong
Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title_full Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title_fullStr Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title_full_unstemmed Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title_short Autophagy maintains ubiquitination-proteasomal degradation of Sirt3 to limit oxidative stress in K562 leukemia cells
title_sort autophagy maintains ubiquitination-proteasomal degradation of sirt3 to limit oxidative stress in k562 leukemia cells
topic Research Paper: Autophagy and Cell Death
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5094955/
https://www.ncbi.nlm.nih.gov/pubmed/27232755
http://dx.doi.org/10.18632/oncotarget.9592
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