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PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer

Epithelial-mesenchymal transition (EMT) is closely associated with tumor invasion and metastasis. However, key regulators of EMT in pancreatic ductal adenocarcinoma (PDAC) need to be further studied. Bioinformatics analyses of pancreatic cancer public datasets showed that glycogen phosphorylase L (P...

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Autores principales: Ji, Qian, Li, Hengchao, Cai, Zhiwei, Yuan, Xiao, Pu, Xi, Huang, Yumeng, Fu, Shengqiao, Chu, Liangmei, Jiang, Chongyi, Xue, Junli, Zhang, Xiaoxin, Li, Rongkun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092766/
https://www.ncbi.nlm.nih.gov/pubmed/37063425
http://dx.doi.org/10.7150/ijbs.76756
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author Ji, Qian
Li, Hengchao
Cai, Zhiwei
Yuan, Xiao
Pu, Xi
Huang, Yumeng
Fu, Shengqiao
Chu, Liangmei
Jiang, Chongyi
Xue, Junli
Zhang, Xiaoxin
Li, Rongkun
author_facet Ji, Qian
Li, Hengchao
Cai, Zhiwei
Yuan, Xiao
Pu, Xi
Huang, Yumeng
Fu, Shengqiao
Chu, Liangmei
Jiang, Chongyi
Xue, Junli
Zhang, Xiaoxin
Li, Rongkun
author_sort Ji, Qian
collection PubMed
description Epithelial-mesenchymal transition (EMT) is closely associated with tumor invasion and metastasis. However, key regulators of EMT in pancreatic ductal adenocarcinoma (PDAC) need to be further studied. Bioinformatics analyses of pancreatic cancer public datasets showed that glycogen phosphorylase L (PYGL) expression is elevated in quasimesenchymal PDAC (QM-PDAC) and positively associated with EMT. In vitro cellular experiments further confirm PYGL as a crucial EMT regulator in PDAC cells. Functionally, PYGL overexpression promotes cell migration and invasion in vitro and facilitates liver metastasis in vivo, while PYGL knockdown has opposite effects. Mechanically, hypoxia induces PYGL expression in a hypoxia inducible factor 1α (HIF1α)-dependent manner and promotes glycogen accumulation. Elevated PYGL mobilizes accumulated glycogen to fuel glycolysis via its activity as a glycogen phosphorylase, thus inducing the EMT process, which could be suppressed by the glycolysis inhibitor 2-deoxy-D-glucose (2-DG). Clinically, PYGL expression is upregulated in PDAC and correlates with its malignant features and poor prognosis. Collectively, the data from our study reveal that the hypoxia/PYGL/glycolysis-induced EMT promotes PDAC metastasis, which establishes the rational for targeting hypoxia/PYGL/glycolysis/EMT signaling pathway against PDAC.
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spelling pubmed-100927662023-04-13 PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer Ji, Qian Li, Hengchao Cai, Zhiwei Yuan, Xiao Pu, Xi Huang, Yumeng Fu, Shengqiao Chu, Liangmei Jiang, Chongyi Xue, Junli Zhang, Xiaoxin Li, Rongkun Int J Biol Sci Research Paper Epithelial-mesenchymal transition (EMT) is closely associated with tumor invasion and metastasis. However, key regulators of EMT in pancreatic ductal adenocarcinoma (PDAC) need to be further studied. Bioinformatics analyses of pancreatic cancer public datasets showed that glycogen phosphorylase L (PYGL) expression is elevated in quasimesenchymal PDAC (QM-PDAC) and positively associated with EMT. In vitro cellular experiments further confirm PYGL as a crucial EMT regulator in PDAC cells. Functionally, PYGL overexpression promotes cell migration and invasion in vitro and facilitates liver metastasis in vivo, while PYGL knockdown has opposite effects. Mechanically, hypoxia induces PYGL expression in a hypoxia inducible factor 1α (HIF1α)-dependent manner and promotes glycogen accumulation. Elevated PYGL mobilizes accumulated glycogen to fuel glycolysis via its activity as a glycogen phosphorylase, thus inducing the EMT process, which could be suppressed by the glycolysis inhibitor 2-deoxy-D-glucose (2-DG). Clinically, PYGL expression is upregulated in PDAC and correlates with its malignant features and poor prognosis. Collectively, the data from our study reveal that the hypoxia/PYGL/glycolysis-induced EMT promotes PDAC metastasis, which establishes the rational for targeting hypoxia/PYGL/glycolysis/EMT signaling pathway against PDAC. Ivyspring International Publisher 2023-03-21 /pmc/articles/PMC10092766/ /pubmed/37063425 http://dx.doi.org/10.7150/ijbs.76756 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Ji, Qian
Li, Hengchao
Cai, Zhiwei
Yuan, Xiao
Pu, Xi
Huang, Yumeng
Fu, Shengqiao
Chu, Liangmei
Jiang, Chongyi
Xue, Junli
Zhang, Xiaoxin
Li, Rongkun
PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title_full PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title_fullStr PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title_full_unstemmed PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title_short PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
title_sort pygl-mediated glucose metabolism reprogramming promotes emt phenotype and metastasis of pancreatic cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092766/
https://www.ncbi.nlm.nih.gov/pubmed/37063425
http://dx.doi.org/10.7150/ijbs.76756
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