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PMID: 25839702 已发表 · ppublish 英语

Mechanisms of DNA methyltransferase-inhibitor interactions: Procyanidin B2 shows new promise for therapeutic intervention of cancer.

Chemico-biological interactions ·第 233 卷 ·2015-07-03

Shilpi Arunima, Parbin Sabnam, Sengupta Dipta, Kar Swayamsiddha, Deb Moonmoon, Rath Sandip Kumar, Pradhan Nibedita, Rakshit Madhumita, Patra Samir Kumar

摘要

DNA methyltransferases (DNMTs) is a key epigenetic enzyme for pharmacological manipulation and is employed in cancer reprogramming. During past few years multiple strategies have been implemented to excavate epigenetic compounds targeting DNMTs. In light of the emerging concept of chemoinformatics, molecular docking and simulation studies have been employed to accelerate the development of DNMT inhibitors. Among the DNMT inhibitors known till date, epigallocathechin-3-gallate (EGCG) was identified to be effective in reducing DNMT activity. However, the broad spectrum of EGCG to other diseases and variable target enzymes offers some limitations. In view of this, 32 EGCG analogues were screened at S-Adnosyl-L-homocysteine (SAH) binding pocket of DNMTs and procyanidin B2-3, 3'-di-O-gallate (procyanidin B2) was obtained as potent inhibitor having medicinally relevant chemical space. Further, in vitro analysis demonstrates the efficiency of procyanidin B2 in attenuating DNMT activity at IC50 of 6.88±0.647 μM and subsequently enhancing the expression of DNMT target genes, E-cadherin, Maspin and BRCA1. Moreover, the toxic property of procyanidin B2 towards triple negative breast cancer cells to normal cells offers platform for pre-clinical trial and an insight to the treatment of cancer.

关键词
Cancer DNA methyltransferases DNMT activity assay Molecular docking Procyanidin B2 Simulation
文献信息
期刊
Chemico-biological interactions
期刊简称
Chem Biol Interact
发表日期
2015-07-03
收录日期
2015-04-23
更新日期
2015-04-23
语言
英语
国家/地区
Ireland
NLM ID
0227276
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