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Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma

Phosphoenolpyruvate carboxykinase (PEPCK or PCK) catalyzes the first rate-limiting step in hepatic gluconeogenesis pathway to maintain blood glucose levels. Mammalian cells express two PCK genes, encoding for a cytoplasmic (PCPEK-C or PCK1) and a mitochondrial (PEPCK-M or PCK2) isoforms, respectivel...

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Autores principales: Liu, Meng-Xi, Jin, Lei, Sun, Si-Jia, Liu, Peng, Feng, Xu, Cheng, Zhou-Li, Liu, Wei-Ren, Guan, Kun-Liang, Shi, Ying-Hong, Yuan, Hai-Xin, Xiong, Yue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5860930/
https://www.ncbi.nlm.nih.gov/pubmed/29335519
http://dx.doi.org/10.1038/s41388-017-0070-6
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author Liu, Meng-Xi
Jin, Lei
Sun, Si-Jia
Liu, Peng
Feng, Xu
Cheng, Zhou-Li
Liu, Wei-Ren
Guan, Kun-Liang
Shi, Ying-Hong
Yuan, Hai-Xin
Xiong, Yue
author_facet Liu, Meng-Xi
Jin, Lei
Sun, Si-Jia
Liu, Peng
Feng, Xu
Cheng, Zhou-Li
Liu, Wei-Ren
Guan, Kun-Liang
Shi, Ying-Hong
Yuan, Hai-Xin
Xiong, Yue
author_sort Liu, Meng-Xi
collection PubMed
description Phosphoenolpyruvate carboxykinase (PEPCK or PCK) catalyzes the first rate-limiting step in hepatic gluconeogenesis pathway to maintain blood glucose levels. Mammalian cells express two PCK genes, encoding for a cytoplasmic (PCPEK-C or PCK1) and a mitochondrial (PEPCK-M or PCK2) isoforms, respectively. Increased expressions of both PCK genes are found in cancer of several organs, including colon, lung and skin, and linked to increased anabolic metabolism and cell proliferation. Here, we report that the expressions of both PCK1 and PCK2 genes are downregulated in primary hepatocellular carcinoma (HCC) and low PCK expression was associated with poor prognosis in patients with HCC. Forced expression of either PCK1 or PCK2 in liver cancer cell lines results in severe apoptosis under the condition of glucose deprivation and suppressed liver tumorigenesis in mice. Mechanistically, we show that the proapoptotic effect of PCK1 requires its catalytic activity. We demonstrate that forced PCK1 expression in glucose-starved liver cancer cells induced TCA cataplerosis, leading to energy crisis and oxidative stress. Replenishing TCA intermediate α-ketoglutarate or inhibition of reactive oxygen species production blocked the cell death caused by PCK expression. Taken together, our data reveal that PCK1 is detrimental to malignant hepatocytes and suggest activating PCK1 expression as a potential treatment strategy for patients with HCC.
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spelling pubmed-58609302018-07-16 Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma Liu, Meng-Xi Jin, Lei Sun, Si-Jia Liu, Peng Feng, Xu Cheng, Zhou-Li Liu, Wei-Ren Guan, Kun-Liang Shi, Ying-Hong Yuan, Hai-Xin Xiong, Yue Oncogene Article Phosphoenolpyruvate carboxykinase (PEPCK or PCK) catalyzes the first rate-limiting step in hepatic gluconeogenesis pathway to maintain blood glucose levels. Mammalian cells express two PCK genes, encoding for a cytoplasmic (PCPEK-C or PCK1) and a mitochondrial (PEPCK-M or PCK2) isoforms, respectively. Increased expressions of both PCK genes are found in cancer of several organs, including colon, lung and skin, and linked to increased anabolic metabolism and cell proliferation. Here, we report that the expressions of both PCK1 and PCK2 genes are downregulated in primary hepatocellular carcinoma (HCC) and low PCK expression was associated with poor prognosis in patients with HCC. Forced expression of either PCK1 or PCK2 in liver cancer cell lines results in severe apoptosis under the condition of glucose deprivation and suppressed liver tumorigenesis in mice. Mechanistically, we show that the proapoptotic effect of PCK1 requires its catalytic activity. We demonstrate that forced PCK1 expression in glucose-starved liver cancer cells induced TCA cataplerosis, leading to energy crisis and oxidative stress. Replenishing TCA intermediate α-ketoglutarate or inhibition of reactive oxygen species production blocked the cell death caused by PCK expression. Taken together, our data reveal that PCK1 is detrimental to malignant hepatocytes and suggest activating PCK1 expression as a potential treatment strategy for patients with HCC. 2018-01-16 2018-03 /pmc/articles/PMC5860930/ /pubmed/29335519 http://dx.doi.org/10.1038/s41388-017-0070-6 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Liu, Meng-Xi
Jin, Lei
Sun, Si-Jia
Liu, Peng
Feng, Xu
Cheng, Zhou-Li
Liu, Wei-Ren
Guan, Kun-Liang
Shi, Ying-Hong
Yuan, Hai-Xin
Xiong, Yue
Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title_full Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title_fullStr Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title_full_unstemmed Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title_short Metabolic reprogramming by PCK1 promotes TCA cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
title_sort metabolic reprogramming by pck1 promotes tca cataplerosis, oxidative stress and apoptosis in liver cancer cells and suppresses hepatocellular carcinoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5860930/
https://www.ncbi.nlm.nih.gov/pubmed/29335519
http://dx.doi.org/10.1038/s41388-017-0070-6
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