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The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition

Malignant tumors often display an aberrant energy metabolism that relies primarily on glycolysis to produce adenosine triphosphate (ATP) the so-called Warburg effect or aerobic glycolysis. Thus, the elucidation of this energetic alteration in malignant tumors is important in the search for more effe...

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Autores principales: Tseng, Po-Lin, Chen, Chih-Wei, Hu, Keng-Hsun, Cheng, Hung-Chi, Lin, Yuan-Ho, Tsai, Wen-Hui, Cheng, Tain-Junn, Wu, Wei-Hsuan, Yeh, Chin-Wei, Lin, Chin-Chih, Tsai, Hui-Ju, Chang, Hao-Chun, Chuang, Jiin-Haur, Shan, Yan-Shen, Chang, Wen-Tsan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5922369/
https://www.ncbi.nlm.nih.gov/pubmed/29721175
http://dx.doi.org/10.18632/oncotarget.24855
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author Tseng, Po-Lin
Chen, Chih-Wei
Hu, Keng-Hsun
Cheng, Hung-Chi
Lin, Yuan-Ho
Tsai, Wen-Hui
Cheng, Tain-Junn
Wu, Wei-Hsuan
Yeh, Chin-Wei
Lin, Chin-Chih
Tsai, Hui-Ju
Chang, Hao-Chun
Chuang, Jiin-Haur
Shan, Yan-Shen
Chang, Wen-Tsan
author_facet Tseng, Po-Lin
Chen, Chih-Wei
Hu, Keng-Hsun
Cheng, Hung-Chi
Lin, Yuan-Ho
Tsai, Wen-Hui
Cheng, Tain-Junn
Wu, Wei-Hsuan
Yeh, Chin-Wei
Lin, Chin-Chih
Tsai, Hui-Ju
Chang, Hao-Chun
Chuang, Jiin-Haur
Shan, Yan-Shen
Chang, Wen-Tsan
author_sort Tseng, Po-Lin
collection PubMed
description Malignant tumors often display an aberrant energy metabolism that relies primarily on glycolysis to produce adenosine triphosphate (ATP) the so-called Warburg effect or aerobic glycolysis. Thus, the elucidation of this energetic alteration in malignant tumors is important in the search for more effective therapeutics against malignant cancers, the most deadly human disease. To investigate whether attenuated glycolytic activity modulates tumor progression, the effects of silencing the first and rate-limiting glycolytic enzyme hexokinase (HK) isozymes HK1 and HK2 were examined. There was an inverse correlation between the expression of HK1 and HK2 in human cancer cells. In cervical carcinoma cells, the HK1 but not HK2 knockdown induced a phenotypic change characteristic of epithelial-mesenchymal transition, which accelerated tumor growth and metastasis both in vitro and in vivo analyses. Notably, the silencing of HK1 disrupted aerobic respiration and increased glycolysis, but it had no effect on ATP generation. These metabolic changes were associated with higher HK2 and lactate dehydrogenase 1 expression but a lower citrate synthase level. Particularly, the HK1 knockdown induced aberrant energy metabolism that was almost recapitulated by HK2 overexpression. Moreover, the HK1-silenced cells showed strong glucose-dependent growth and 2-deoxyglucose (2-DG) induced cell proliferation inhibition. These results clearly indicate that the silencing of HK1, but not HK2, alters energy metabolism and induces an EMT phenotype, which enhances tumor malignancy, but increases the susceptibility of cancer cells to 2-DG inhibition. In addition, this work also suggests that the glycolytic inhibitors should be used only to treat cancers with elevated glycolytic activity.
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spelling pubmed-59223692018-05-02 The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition Tseng, Po-Lin Chen, Chih-Wei Hu, Keng-Hsun Cheng, Hung-Chi Lin, Yuan-Ho Tsai, Wen-Hui Cheng, Tain-Junn Wu, Wei-Hsuan Yeh, Chin-Wei Lin, Chin-Chih Tsai, Hui-Ju Chang, Hao-Chun Chuang, Jiin-Haur Shan, Yan-Shen Chang, Wen-Tsan Oncotarget Research Paper Malignant tumors often display an aberrant energy metabolism that relies primarily on glycolysis to produce adenosine triphosphate (ATP) the so-called Warburg effect or aerobic glycolysis. Thus, the elucidation of this energetic alteration in malignant tumors is important in the search for more effective therapeutics against malignant cancers, the most deadly human disease. To investigate whether attenuated glycolytic activity modulates tumor progression, the effects of silencing the first and rate-limiting glycolytic enzyme hexokinase (HK) isozymes HK1 and HK2 were examined. There was an inverse correlation between the expression of HK1 and HK2 in human cancer cells. In cervical carcinoma cells, the HK1 but not HK2 knockdown induced a phenotypic change characteristic of epithelial-mesenchymal transition, which accelerated tumor growth and metastasis both in vitro and in vivo analyses. Notably, the silencing of HK1 disrupted aerobic respiration and increased glycolysis, but it had no effect on ATP generation. These metabolic changes were associated with higher HK2 and lactate dehydrogenase 1 expression but a lower citrate synthase level. Particularly, the HK1 knockdown induced aberrant energy metabolism that was almost recapitulated by HK2 overexpression. Moreover, the HK1-silenced cells showed strong glucose-dependent growth and 2-deoxyglucose (2-DG) induced cell proliferation inhibition. These results clearly indicate that the silencing of HK1, but not HK2, alters energy metabolism and induces an EMT phenotype, which enhances tumor malignancy, but increases the susceptibility of cancer cells to 2-DG inhibition. In addition, this work also suggests that the glycolytic inhibitors should be used only to treat cancers with elevated glycolytic activity. Impact Journals LLC 2018-04-10 /pmc/articles/PMC5922369/ /pubmed/29721175 http://dx.doi.org/10.18632/oncotarget.24855 Text en Copyright: © 2018 Tseng et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Tseng, Po-Lin
Chen, Chih-Wei
Hu, Keng-Hsun
Cheng, Hung-Chi
Lin, Yuan-Ho
Tsai, Wen-Hui
Cheng, Tain-Junn
Wu, Wei-Hsuan
Yeh, Chin-Wei
Lin, Chin-Chih
Tsai, Hui-Ju
Chang, Hao-Chun
Chuang, Jiin-Haur
Shan, Yan-Shen
Chang, Wen-Tsan
The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title_full The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title_fullStr The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title_full_unstemmed The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title_short The decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
title_sort decrease of glycolytic enzyme hexokinase 1 accelerates tumor malignancy via deregulating energy metabolism but sensitizes cancer cells to 2-deoxyglucose inhibition
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5922369/
https://www.ncbi.nlm.nih.gov/pubmed/29721175
http://dx.doi.org/10.18632/oncotarget.24855
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