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PMID: 24570007 已发表 · ppublish 英语

DNA promoter methylation-dependent transcription of the double C2-like domain β (DOC2B) gene regulates tumor growth in human cervical cancer.

The Journal of biological chemistry ·第 289 卷 ·第 15 期 ·2014-06-20

Kabekkodu Shama Prasada, Bhat Samatha, Radhakrishnan Raghu, Aithal Abhijit, Mascarenhas Roshan, Pandey Deeksha, Rai Lavanya, Kushtagi Pralhad, Mundyat Gopinath Puthiya, Satyamoorthy Kapaettu

摘要

Double C2-like domain β (DOC2B) gene encodes for a calcium-binding protein, which is involved in neurotransmitter release, sorting, and exocytosis. We have identified the promoter region of the DOC2B gene as hypermethylated in pre-malignant, malignant cervical tissues, and cervical cancer cell lines by methylation-sensitive dimethyl sulfoxide-polymerase chain reaction and bisulfite genome sequencing; whereas, it was unmethylated in normal cervical tissues (p < 0.05). The promoter hypermethylation was inversely associated with mRNA expression in SiHa, CaSki, and HeLa cells and treatment with demethylating agent 5-aza-2-deoxycytidine restored DOC2B expression. The region -630 to +25 bp of the DOC2B gene showed robust promoter activity by a luciferase reporter assay and was inhibited by in vitro artificial methylation with Sss1 methylase prior to transient transfections. Overexpression of the DOC2B gene in SiHa cells when compared with controls showed significantly reduced colony formation, cell proliferation, induced cell cycle arrest, and repressed cell migration and invasion (p < 0.05). Ectopic expression of DOC2B resulted in anoikis-mediated cell death and repressed tumor growth in a nude mice xenograft model (p < 0.05). DOC2B expressing cells showed a significant increase in intracellular calcium level (p < 0.05), impaired AKT1 and ERK1/2 signaling, and induced actin cytoskeleton remodeling. Our results show that promoter hypermethylation and silencing of the DOC2B gene is an early and frequent event during cervical carcinogenesis and whose reduced expression due to DNA promoter methylation may lead to selective cervical tumor growth.

关键词
Actin Remodeling Akt Cell Growth Cell Invasion Cell Motility Cervical Cancer DNA Promoter Methylation DOC2B ERK Human Papillomavirus
文献信息
期刊
The Journal of biological chemistry
期刊简称
J Biol Chem
发表日期
2014-06-20
收录日期
2014-04-14
更新日期
2015-05-15
语言
英语
国家/地区
United States
NLM ID
2985121R
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