Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α

Li-rui Tang,1,* Jun-xin Wu,1,* Shao-li Cai,2 Yun-xia Huang,1 Xue-qing Zhang,1 Wan-kai Fu,1 Qing-yang Zhuang,1 Jin-luan Li1 1Department of Radiation Oncology, Fujian Medical University Cancer Hospital, Fujian Cancer Hospital, Fuzhou, China; 2Key Laboratories of Innate Immune Biology of Fujian Provin...

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Main Authors: Tang L, Wu J, Cai S, Huang Y, Zhang X, Fu W, Zhuang Q, Li J
Format: Article
Language:English
Published: Dove Medical Press 2018-11-01
Series:OncoTargets and Therapy
Subjects:
Online Access:https://www.dovepress.com/prolyl-hydroxylase-domain-3-influences-the-radiotherapy-efficacy-of-pa-peer-reviewed-article-OTT
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spelling doaj-cc9d960c54b849f2b521bfc73fa2c0f62020-11-24T21:39:34ZengDove Medical PressOncoTargets and Therapy1178-69302018-11-01Volume 118507851542695Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1αTang LWu JCai SHuang YZhang XFu WZhuang QLi JLi-rui Tang,1,* Jun-xin Wu,1,* Shao-li Cai,2 Yun-xia Huang,1 Xue-qing Zhang,1 Wan-kai Fu,1 Qing-yang Zhuang,1 Jin-luan Li1 1Department of Radiation Oncology, Fujian Medical University Cancer Hospital, Fujian Cancer Hospital, Fuzhou, China; 2Key Laboratories of Innate Immune Biology of Fujian Province, Biomedical Research Center of South China, Fujian Normal University, Fuzhou, China *These authors contributed equally to this work Purpose: Pancreatic cancer is characterized by a hypoxic microenvironment and resistance to most currently available treatment modalities. Prolyl hydroxylase domain 3 (PHD3) is a rate-limiting enzyme that regulates the degradation of hypoxia-inducible factors (HIFs) and is deregulated in pancreatic cancer cells. Whether such alteration of PHD3 expression contributes to the sustained growth and radioresistance of pancreatic cancer cells remains largely unknown. Materials and methods: PHD3 was overexpressed in pancreatic cancer Mia-paca2 cells via lentiviral expression. Cell cycle progression and apoptosis were assayed by flow cytometry. HIF-1α, EGFR, and PHD3 protein expression was assessed by Western blotting. Cell survival was determined in a colony formation assay. Results: PHD3 overexpression suppressed HIF-1α protein expression and EGFR phosphorylation and enhanced the 2 Gy irradiation-mediated reductions in HIF-1α and phosphorylated (p)-EGFR under either normoxic or hypoxic conditions. PHD3 overexpression inhibited the growth and colony formation of Mia-paca2 cells in response to irradiation under either normoxic or hypoxic conditions. PHD3 overexpression exacerbated irradiation-induced apoptosis, with a greater effect under hypoxia than normoxia. Cell cycle distribution analysis demonstrated that PHD3 overexpression resulted in further shortened S phase and lengthened G2/M phase in response to irradiation. Conclusion: PHD3 expression may contribute to the radiotherapy efficacy of pancreatic cancer cells and serve as a novel biomarker for improving radiotherapy efficacy in pancreatic cancer. Keywords: pancreatic cancer, PHD3, radiotherapy efficacy, HIF-1α, p-EGFRhttps://www.dovepress.com/prolyl-hydroxylase-domain-3-influences-the-radiotherapy-efficacy-of-pa-peer-reviewed-article-OTTpancreatic cancerPHD3radiotherapy efficacyHIF-1αp-EGFR
collection DOAJ
language English
format Article
sources DOAJ
author Tang L
Wu J
Cai S
Huang Y
Zhang X
Fu W
Zhuang Q
Li J
spellingShingle Tang L
Wu J
Cai S
Huang Y
Zhang X
Fu W
Zhuang Q
Li J
Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
OncoTargets and Therapy
pancreatic cancer
PHD3
radiotherapy efficacy
HIF-1α
p-EGFR
author_facet Tang L
Wu J
Cai S
Huang Y
Zhang X
Fu W
Zhuang Q
Li J
author_sort Tang L
title Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
title_short Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
title_full Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
title_fullStr Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
title_full_unstemmed Prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
title_sort prolyl hydroxylase domain 3 influences the radiotherapy efficacy of pancreatic cancer cells by targeting hypoxia-inducible factor-1α
publisher Dove Medical Press
series OncoTargets and Therapy
issn 1178-6930
publishDate 2018-11-01
description Li-rui Tang,1,* Jun-xin Wu,1,* Shao-li Cai,2 Yun-xia Huang,1 Xue-qing Zhang,1 Wan-kai Fu,1 Qing-yang Zhuang,1 Jin-luan Li1 1Department of Radiation Oncology, Fujian Medical University Cancer Hospital, Fujian Cancer Hospital, Fuzhou, China; 2Key Laboratories of Innate Immune Biology of Fujian Province, Biomedical Research Center of South China, Fujian Normal University, Fuzhou, China *These authors contributed equally to this work Purpose: Pancreatic cancer is characterized by a hypoxic microenvironment and resistance to most currently available treatment modalities. Prolyl hydroxylase domain 3 (PHD3) is a rate-limiting enzyme that regulates the degradation of hypoxia-inducible factors (HIFs) and is deregulated in pancreatic cancer cells. Whether such alteration of PHD3 expression contributes to the sustained growth and radioresistance of pancreatic cancer cells remains largely unknown. Materials and methods: PHD3 was overexpressed in pancreatic cancer Mia-paca2 cells via lentiviral expression. Cell cycle progression and apoptosis were assayed by flow cytometry. HIF-1α, EGFR, and PHD3 protein expression was assessed by Western blotting. Cell survival was determined in a colony formation assay. Results: PHD3 overexpression suppressed HIF-1α protein expression and EGFR phosphorylation and enhanced the 2 Gy irradiation-mediated reductions in HIF-1α and phosphorylated (p)-EGFR under either normoxic or hypoxic conditions. PHD3 overexpression inhibited the growth and colony formation of Mia-paca2 cells in response to irradiation under either normoxic or hypoxic conditions. PHD3 overexpression exacerbated irradiation-induced apoptosis, with a greater effect under hypoxia than normoxia. Cell cycle distribution analysis demonstrated that PHD3 overexpression resulted in further shortened S phase and lengthened G2/M phase in response to irradiation. Conclusion: PHD3 expression may contribute to the radiotherapy efficacy of pancreatic cancer cells and serve as a novel biomarker for improving radiotherapy efficacy in pancreatic cancer. Keywords: pancreatic cancer, PHD3, radiotherapy efficacy, HIF-1α, p-EGFR
topic pancreatic cancer
PHD3
radiotherapy efficacy
HIF-1α
p-EGFR
url https://www.dovepress.com/prolyl-hydroxylase-domain-3-influences-the-radiotherapy-efficacy-of-pa-peer-reviewed-article-OTT
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