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Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism

Most cancer cells exhibit a shift in glucose metabolic strategy, displaying increased glycolysis even with adequate oxygen supply. SUMO-specific proteases (SENPs) de-SUMOylate substrates including HIF1α and p53,two key regulators in cancer glucose metabolism, to regulate their activity, stability an...

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Autores principales: Tang, Shuang, Huang, Gang, Tong, Xuemei, Xu, Lian, Cai, Rong, Li, Jie, Zhou, Xiang, Song, Shaoli, Huang, Chen, Cheng, Jinke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3653847/
https://www.ncbi.nlm.nih.gov/pubmed/23691130
http://dx.doi.org/10.1371/journal.pone.0063965
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author Tang, Shuang
Huang, Gang
Tong, Xuemei
Xu, Lian
Cai, Rong
Li, Jie
Zhou, Xiang
Song, Shaoli
Huang, Chen
Cheng, Jinke
author_facet Tang, Shuang
Huang, Gang
Tong, Xuemei
Xu, Lian
Cai, Rong
Li, Jie
Zhou, Xiang
Song, Shaoli
Huang, Chen
Cheng, Jinke
author_sort Tang, Shuang
collection PubMed
description Most cancer cells exhibit a shift in glucose metabolic strategy, displaying increased glycolysis even with adequate oxygen supply. SUMO-specific proteases (SENPs) de-SUMOylate substrates including HIF1α and p53,two key regulators in cancer glucose metabolism, to regulate their activity, stability and subcellular localization. However, the role of SENPs in tumor glucose metabolism remains unclear. Here we report that SUMO-specific protease 2 (SENP2) negatively regulates aerobic glycolysis in MCF7 and MEF cells. Over-expression of SENP2 reduces the glucose uptake and lactate production, increasing the cellular ATP levels in MCF7 cells, while SENP2 knockout MEF cells show increased glucose uptake and lactate production along with the decreased ATP levels. Consistently, the MCF7 cells over-expressing SENP2 exhibit decreased expression levels of key glycolytic enzymes and an increased rate of glucose oxidation compared with control MCF7 cells, indicating inhibited glycolysis but enhanced oxidative mitochondrial respiration. Moreover, SENP2 over-expressing MCF7 cells demonstrated a reduced amount of phosphorylated AKT, whereas SENP2 knockout MEFs exhibit increased levels of phosphorylated AKT. Furthermore, inhibiting AKT phosphorylation by LY294002 rescued the phenotype induced by SENP2 deficiency in MEFs. In conclusion, SENP2 represses glycolysis and shifts glucose metabolic strategy, in part through inhibition of AKT phosphorylation. Our study reveals a novel function of SENP2 in regulating glucose metabolism.
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spelling pubmed-36538472013-05-20 Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism Tang, Shuang Huang, Gang Tong, Xuemei Xu, Lian Cai, Rong Li, Jie Zhou, Xiang Song, Shaoli Huang, Chen Cheng, Jinke PLoS One Research Article Most cancer cells exhibit a shift in glucose metabolic strategy, displaying increased glycolysis even with adequate oxygen supply. SUMO-specific proteases (SENPs) de-SUMOylate substrates including HIF1α and p53,two key regulators in cancer glucose metabolism, to regulate their activity, stability and subcellular localization. However, the role of SENPs in tumor glucose metabolism remains unclear. Here we report that SUMO-specific protease 2 (SENP2) negatively regulates aerobic glycolysis in MCF7 and MEF cells. Over-expression of SENP2 reduces the glucose uptake and lactate production, increasing the cellular ATP levels in MCF7 cells, while SENP2 knockout MEF cells show increased glucose uptake and lactate production along with the decreased ATP levels. Consistently, the MCF7 cells over-expressing SENP2 exhibit decreased expression levels of key glycolytic enzymes and an increased rate of glucose oxidation compared with control MCF7 cells, indicating inhibited glycolysis but enhanced oxidative mitochondrial respiration. Moreover, SENP2 over-expressing MCF7 cells demonstrated a reduced amount of phosphorylated AKT, whereas SENP2 knockout MEFs exhibit increased levels of phosphorylated AKT. Furthermore, inhibiting AKT phosphorylation by LY294002 rescued the phenotype induced by SENP2 deficiency in MEFs. In conclusion, SENP2 represses glycolysis and shifts glucose metabolic strategy, in part through inhibition of AKT phosphorylation. Our study reveals a novel function of SENP2 in regulating glucose metabolism. Public Library of Science 2013-05-14 /pmc/articles/PMC3653847/ /pubmed/23691130 http://dx.doi.org/10.1371/journal.pone.0063965 Text en © 2013 Tang et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Tang, Shuang
Huang, Gang
Tong, Xuemei
Xu, Lian
Cai, Rong
Li, Jie
Zhou, Xiang
Song, Shaoli
Huang, Chen
Cheng, Jinke
Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title_full Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title_fullStr Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title_full_unstemmed Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title_short Role of SUMO-Specific Protease 2 in Reprogramming Cellular Glucose Metabolism
title_sort role of sumo-specific protease 2 in reprogramming cellular glucose metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3653847/
https://www.ncbi.nlm.nih.gov/pubmed/23691130
http://dx.doi.org/10.1371/journal.pone.0063965
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