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HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer

HDAC5 is a class IIa histone deacetylase member that is downregulated in multiple solid tumors, including pancreatic cancer, and loss of HDAC5 is associated with unfavorable prognosis. In this study, assessment of The Cancer Genome Atlas pancreatic adenocarcinoma dataset revealed that expression of...

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Autores principales: Pan, Penglin, Qin, Gengdu, Wang, Bo, Yu, Haixin, Chen, Jie, Liu, Jiaying, Bing, Kaijian, Shen, Jian, Ren, Dianyun, Zhao, Yuhan, Xia, Wentao, Li, Hui, Wu, Heshui, Zhou, Yingke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755957/
https://www.ncbi.nlm.nih.gov/pubmed/36102738
http://dx.doi.org/10.1158/0008-5472.CAN-21-4362
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author Pan, Penglin
Qin, Gengdu
Wang, Bo
Yu, Haixin
Chen, Jie
Liu, Jiaying
Bing, Kaijian
Shen, Jian
Ren, Dianyun
Zhao, Yuhan
Xia, Wentao
Li, Hui
Wu, Heshui
Zhou, Yingke
author_facet Pan, Penglin
Qin, Gengdu
Wang, Bo
Yu, Haixin
Chen, Jie
Liu, Jiaying
Bing, Kaijian
Shen, Jian
Ren, Dianyun
Zhao, Yuhan
Xia, Wentao
Li, Hui
Wu, Heshui
Zhou, Yingke
author_sort Pan, Penglin
collection PubMed
description HDAC5 is a class IIa histone deacetylase member that is downregulated in multiple solid tumors, including pancreatic cancer, and loss of HDAC5 is associated with unfavorable prognosis. In this study, assessment of The Cancer Genome Atlas pancreatic adenocarcinoma dataset revealed that expression of HDAC5 correlates negatively with arachidonic acid (AA) metabolism, which has been implicated in inflammatory responses and cancer progression. Nontargeted metabolomics analysis revealed that HDAC5 knockdown resulted in a significant increase in AA and its downstream metabolites, such as eicosanoids and prostaglandins. HDAC5 negatively regulated the expression of the gene encoding calcium-dependent phospholipase A2 (cPLA2), the key enzyme in the production of AA from phospholipids. Mechanistically, HDAC5 repressed cPLA2 expression via deacetylation of GATA1. HDAC5 knockdown in cancer cells enhanced sensitivity to genetic or pharmacologic inhibition of cPLA2 in vitro and in vivo. Fatty acid supplementation in the diet reversed the sensitivity of HDAC5-deficient tumors to cPLA2 inhibition. These data indicate that HDAC5 loss in pancreatic cancer results in the hyperacetylation of GATA1, enabling the upregulation of cPLA2, which contributes to overproduction of AA. Dietary management plus cPLA2-targeted therapy could serve as a viable strategy for treating HDAC5-deficient pancreatic cancer patients. SIGNIFICANCE: The HDAC5-GATA1-cPLA2-AA signaling axis regulates sensitivity to fat restriction plus cPLA2 inhibition in pancreatic ductal adenocarcinoma, proposing dietary management as a feasible strategy for treating a subset of patients with pancreatic cancer.
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spelling pubmed-97559572023-01-05 HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer Pan, Penglin Qin, Gengdu Wang, Bo Yu, Haixin Chen, Jie Liu, Jiaying Bing, Kaijian Shen, Jian Ren, Dianyun Zhao, Yuhan Xia, Wentao Li, Hui Wu, Heshui Zhou, Yingke Cancer Res Molecular Cell Biology HDAC5 is a class IIa histone deacetylase member that is downregulated in multiple solid tumors, including pancreatic cancer, and loss of HDAC5 is associated with unfavorable prognosis. In this study, assessment of The Cancer Genome Atlas pancreatic adenocarcinoma dataset revealed that expression of HDAC5 correlates negatively with arachidonic acid (AA) metabolism, which has been implicated in inflammatory responses and cancer progression. Nontargeted metabolomics analysis revealed that HDAC5 knockdown resulted in a significant increase in AA and its downstream metabolites, such as eicosanoids and prostaglandins. HDAC5 negatively regulated the expression of the gene encoding calcium-dependent phospholipase A2 (cPLA2), the key enzyme in the production of AA from phospholipids. Mechanistically, HDAC5 repressed cPLA2 expression via deacetylation of GATA1. HDAC5 knockdown in cancer cells enhanced sensitivity to genetic or pharmacologic inhibition of cPLA2 in vitro and in vivo. Fatty acid supplementation in the diet reversed the sensitivity of HDAC5-deficient tumors to cPLA2 inhibition. These data indicate that HDAC5 loss in pancreatic cancer results in the hyperacetylation of GATA1, enabling the upregulation of cPLA2, which contributes to overproduction of AA. Dietary management plus cPLA2-targeted therapy could serve as a viable strategy for treating HDAC5-deficient pancreatic cancer patients. SIGNIFICANCE: The HDAC5-GATA1-cPLA2-AA signaling axis regulates sensitivity to fat restriction plus cPLA2 inhibition in pancreatic ductal adenocarcinoma, proposing dietary management as a feasible strategy for treating a subset of patients with pancreatic cancer. American Association for Cancer Research 2022-12-16 2022-09-14 /pmc/articles/PMC9755957/ /pubmed/36102738 http://dx.doi.org/10.1158/0008-5472.CAN-21-4362 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Molecular Cell Biology
Pan, Penglin
Qin, Gengdu
Wang, Bo
Yu, Haixin
Chen, Jie
Liu, Jiaying
Bing, Kaijian
Shen, Jian
Ren, Dianyun
Zhao, Yuhan
Xia, Wentao
Li, Hui
Wu, Heshui
Zhou, Yingke
HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title_full HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title_fullStr HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title_full_unstemmed HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title_short HDAC5 Loss Enhances Phospholipid-Derived Arachidonic Acid Generation and Confers Sensitivity to cPLA2 Inhibition in Pancreatic Cancer
title_sort hdac5 loss enhances phospholipid-derived arachidonic acid generation and confers sensitivity to cpla2 inhibition in pancreatic cancer
topic Molecular Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755957/
https://www.ncbi.nlm.nih.gov/pubmed/36102738
http://dx.doi.org/10.1158/0008-5472.CAN-21-4362
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