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CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis

Metabolic dysfunction is a hallmark of gastric cancer (GC). In this study, we reported the identification of Calcium Binding Protein 39-Like (CAB39L) as a novel regulator of tumor metabolism in GC. CAB39L mRNA was frequently silenced by promoter methylation in GC cell lines and tissues. Functional s...

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Autores principales: Li, Weilin, Wong, Chi Chun, Zhang, Xiaoming, Kang, Wei, Nakatsu, Geicho, Zhao, Qinfu, Chen, Huarong, Go, Minnie Yin Yin, Chiu, Philip Wai Yan, Wang, Xiaohong, Ji, Jiafu, Li, Xiaona, Cai, Zongwei, Ng, Enders Kwok Wai, Yu, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6296350/
https://www.ncbi.nlm.nih.gov/pubmed/30054562
http://dx.doi.org/10.1038/s41388-018-0402-1
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author Li, Weilin
Wong, Chi Chun
Zhang, Xiaoming
Kang, Wei
Nakatsu, Geicho
Zhao, Qinfu
Chen, Huarong
Go, Minnie Yin Yin
Chiu, Philip Wai Yan
Wang, Xiaohong
Ji, Jiafu
Li, Xiaona
Cai, Zongwei
Ng, Enders Kwok Wai
Yu, Jun
author_facet Li, Weilin
Wong, Chi Chun
Zhang, Xiaoming
Kang, Wei
Nakatsu, Geicho
Zhao, Qinfu
Chen, Huarong
Go, Minnie Yin Yin
Chiu, Philip Wai Yan
Wang, Xiaohong
Ji, Jiafu
Li, Xiaona
Cai, Zongwei
Ng, Enders Kwok Wai
Yu, Jun
author_sort Li, Weilin
collection PubMed
description Metabolic dysfunction is a hallmark of gastric cancer (GC). In this study, we reported the identification of Calcium Binding Protein 39-Like (CAB39L) as a novel regulator of tumor metabolism in GC. CAB39L mRNA was frequently silenced by promoter methylation in GC cell lines and tissues. Functional studies suggested that CAB39L functions as a tumor suppressor, as overexpression of CAB39L elicited suppression of multiple cancer phenotypes both in GC cells and an orthotopic mouse model; whilst its knockdown promoted tumorigenesis. Mechanistically, CAB39L interacted with LKB1-STRAD complex and induced LKB1, leading to the phosphorylation and activation of AMPKα/β. LKB1-AMPK activation in GC cell lines was tumor suppressive, as metformin (an AMPK activator) inhibited GC cell growth in the CAB39L-silenced cells. Moreover, knockdown of LKB1 reversed growth inhibitory effect of CAB39L, indicating that tumor suppression by CAB39L depended on LKB1-AMPK. RNAseq and gene set enrichment analysis revealed that CAB39L was closely correlated with oxidative phosphorylation and mitochondrial biogenesis. Consistently, CAB39L-induced p-AMPK elicited PGC1α phosphorylation and increased the expression of genes involved in mitochondrial respiration complexes. Accordingly, CAB39L reversed the Warburg effect in GC, as evidenced by enhanced oxygen consumption rate and reduced extracellular acidification rate; inversely, CAB39L knockdown promoted a metabolic shift towards the Warburg phenotype. In GC patients, CAB39L promoter hypermethylation was correlated with poor prognosis. Our data demonstrate that CAB39L is a novel tumor suppressor which suppresses tumorigenesis by promoting LKB1-AMPK-PGC1α axis, thereby preventing a metabolic shift that drives carcinogenesis. CAB39L methylation is a potential prognostic biomarker for GC patients.
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spelling pubmed-62963502018-12-17 CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis Li, Weilin Wong, Chi Chun Zhang, Xiaoming Kang, Wei Nakatsu, Geicho Zhao, Qinfu Chen, Huarong Go, Minnie Yin Yin Chiu, Philip Wai Yan Wang, Xiaohong Ji, Jiafu Li, Xiaona Cai, Zongwei Ng, Enders Kwok Wai Yu, Jun Oncogene Article Metabolic dysfunction is a hallmark of gastric cancer (GC). In this study, we reported the identification of Calcium Binding Protein 39-Like (CAB39L) as a novel regulator of tumor metabolism in GC. CAB39L mRNA was frequently silenced by promoter methylation in GC cell lines and tissues. Functional studies suggested that CAB39L functions as a tumor suppressor, as overexpression of CAB39L elicited suppression of multiple cancer phenotypes both in GC cells and an orthotopic mouse model; whilst its knockdown promoted tumorigenesis. Mechanistically, CAB39L interacted with LKB1-STRAD complex and induced LKB1, leading to the phosphorylation and activation of AMPKα/β. LKB1-AMPK activation in GC cell lines was tumor suppressive, as metformin (an AMPK activator) inhibited GC cell growth in the CAB39L-silenced cells. Moreover, knockdown of LKB1 reversed growth inhibitory effect of CAB39L, indicating that tumor suppression by CAB39L depended on LKB1-AMPK. RNAseq and gene set enrichment analysis revealed that CAB39L was closely correlated with oxidative phosphorylation and mitochondrial biogenesis. Consistently, CAB39L-induced p-AMPK elicited PGC1α phosphorylation and increased the expression of genes involved in mitochondrial respiration complexes. Accordingly, CAB39L reversed the Warburg effect in GC, as evidenced by enhanced oxygen consumption rate and reduced extracellular acidification rate; inversely, CAB39L knockdown promoted a metabolic shift towards the Warburg phenotype. In GC patients, CAB39L promoter hypermethylation was correlated with poor prognosis. Our data demonstrate that CAB39L is a novel tumor suppressor which suppresses tumorigenesis by promoting LKB1-AMPK-PGC1α axis, thereby preventing a metabolic shift that drives carcinogenesis. CAB39L methylation is a potential prognostic biomarker for GC patients. Nature Publishing Group UK 2018-07-27 2018 /pmc/articles/PMC6296350/ /pubmed/30054562 http://dx.doi.org/10.1038/s41388-018-0402-1 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Li, Weilin
Wong, Chi Chun
Zhang, Xiaoming
Kang, Wei
Nakatsu, Geicho
Zhao, Qinfu
Chen, Huarong
Go, Minnie Yin Yin
Chiu, Philip Wai Yan
Wang, Xiaohong
Ji, Jiafu
Li, Xiaona
Cai, Zongwei
Ng, Enders Kwok Wai
Yu, Jun
CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title_full CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title_fullStr CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title_full_unstemmed CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title_short CAB39L elicited an anti-Warburg effect via a LKB1-AMPK-PGC1α axis to inhibit gastric tumorigenesis
title_sort cab39l elicited an anti-warburg effect via a lkb1-ampk-pgc1α axis to inhibit gastric tumorigenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6296350/
https://www.ncbi.nlm.nih.gov/pubmed/30054562
http://dx.doi.org/10.1038/s41388-018-0402-1
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