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XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells

BACKGROUND: Recent clinical studies have linked polymorphisms in the xeroderma pigmentosum group D (XPD) gene, a key repair gene involved in nucleotide excision repair, to increased risk of hepatocellular carcinoma (HCC). However, the cellular effects of XPD expression in cultured HCC cells remain l...

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Autores principales: Zheng, Jian-feng, Li, Lin-lin, Lu, Juan, Yan, Kun, Guo, Wu-hua, Zhang, Ji-xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4461047/
https://www.ncbi.nlm.nih.gov/pubmed/26031757
http://dx.doi.org/10.12659/MSM.894303
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author Zheng, Jian-feng
Li, Lin-lin
Lu, Juan
Yan, Kun
Guo, Wu-hua
Zhang, Ji-xiang
author_facet Zheng, Jian-feng
Li, Lin-lin
Lu, Juan
Yan, Kun
Guo, Wu-hua
Zhang, Ji-xiang
author_sort Zheng, Jian-feng
collection PubMed
description BACKGROUND: Recent clinical studies have linked polymorphisms in the xeroderma pigmentosum group D (XPD) gene, a key repair gene involved in nucleotide excision repair, to increased risk of hepatocellular carcinoma (HCC). However, the cellular effects of XPD expression in cultured HCC cells remain largely uncharacterized. Therefore, the aim of this study was to characterize the in vitro cellular effects of XPD expression on the HCC cell line HepG2. MATERIAL/METHODS: HepG2 cells were transfected as follows to create four experimental groups: pEGFP-N2/XPD plasmid (XPD) group, EGFP-N2 plasmid (N2) control group, lipofectamine™ 2000 (lipid) control group, and non-transfected (CON) control group. An MTT cell proliferation assay, Annexin V-APC apoptosis assay, colony formation assay, scratch wound migration assay, Transwell migration assay, and Western blotting of the autophagic proteins LC3 and p62 were conducted. RESULTS: XPD expression significantly inhibited HepG2 cell proliferation (p<0.05), significantly promoted HepG2 cell apoptosis (p<0.05), significantly inhibited HepG2 colony formation (p<0.05), significantly decreased HepG2 cells’ migratory ability (p<0.05), and significantly lowered HepG2 cells’ invasive capacity (p<0.05). Western blotting showed that XPD expression significantly increased LC3 expression (p<0.05) and significantly reduced p62 expression (p<0.05). CONCLUSIONS: XPD expression serves as a tumor suppressor and dysregulates autophagic protein degradation in HepG2 cells in vitro. Further in vivo pre-clinical studies and clinical trials are needed to validate XPD’s potential as a tumor-suppressive gene therapy.
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spelling pubmed-44610472015-06-18 XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells Zheng, Jian-feng Li, Lin-lin Lu, Juan Yan, Kun Guo, Wu-hua Zhang, Ji-xiang Med Sci Monit Molecular Biology BACKGROUND: Recent clinical studies have linked polymorphisms in the xeroderma pigmentosum group D (XPD) gene, a key repair gene involved in nucleotide excision repair, to increased risk of hepatocellular carcinoma (HCC). However, the cellular effects of XPD expression in cultured HCC cells remain largely uncharacterized. Therefore, the aim of this study was to characterize the in vitro cellular effects of XPD expression on the HCC cell line HepG2. MATERIAL/METHODS: HepG2 cells were transfected as follows to create four experimental groups: pEGFP-N2/XPD plasmid (XPD) group, EGFP-N2 plasmid (N2) control group, lipofectamine™ 2000 (lipid) control group, and non-transfected (CON) control group. An MTT cell proliferation assay, Annexin V-APC apoptosis assay, colony formation assay, scratch wound migration assay, Transwell migration assay, and Western blotting of the autophagic proteins LC3 and p62 were conducted. RESULTS: XPD expression significantly inhibited HepG2 cell proliferation (p<0.05), significantly promoted HepG2 cell apoptosis (p<0.05), significantly inhibited HepG2 colony formation (p<0.05), significantly decreased HepG2 cells’ migratory ability (p<0.05), and significantly lowered HepG2 cells’ invasive capacity (p<0.05). Western blotting showed that XPD expression significantly increased LC3 expression (p<0.05) and significantly reduced p62 expression (p<0.05). CONCLUSIONS: XPD expression serves as a tumor suppressor and dysregulates autophagic protein degradation in HepG2 cells in vitro. Further in vivo pre-clinical studies and clinical trials are needed to validate XPD’s potential as a tumor-suppressive gene therapy. International Scientific Literature, Inc. 2015-05-29 /pmc/articles/PMC4461047/ /pubmed/26031757 http://dx.doi.org/10.12659/MSM.894303 Text en © Med Sci Monit, 2015 This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License
spellingShingle Molecular Biology
Zheng, Jian-feng
Li, Lin-lin
Lu, Juan
Yan, Kun
Guo, Wu-hua
Zhang, Ji-xiang
XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title_full XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title_fullStr XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title_full_unstemmed XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title_short XPD Functions as a Tumor Suppressor and Dysregulates Autophagy in Cultured HepG2 Cells
title_sort xpd functions as a tumor suppressor and dysregulates autophagy in cultured hepg2 cells
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4461047/
https://www.ncbi.nlm.nih.gov/pubmed/26031757
http://dx.doi.org/10.12659/MSM.894303
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