Transcriptome and DNA methylation changes modulated by sulforaphane induce cell cycle arrest, apoptosis, DNA damage, and suppression of proliferation in human liver cancer cells

被引:49
作者
da Silva dos Santos, Patrick Wellington [1 ]
Thomazela Machado, Ana Rita [1 ]
De Grandis, Rone Aparecido [2 ]
Ribeiro, Diego Luis [2 ]
Tuttis, Katiuska [2 ]
Morselli, Marco [3 ]
Aissa, Alexandre Ferro [1 ]
Pellegrini, Matteo [3 ]
Greggi Antunes, Lusania Maria [1 ]
机构
[1] Univ Sao Paulo, Sch Pharmaceut Sci Ribeirao Preto, Dept Clin Anal Toxicol & Food Sci, Av Cafe Vila Monte Alegre, BR-14040903 Ribeirao Preto, SP, Brazil
[2] Univ Sao Paulo, Ribeirao Preto Med Sch, Dept Genet, Av Bandeirantes 3900, BR-14049900 Ribeirao Preto, SP, Brazil
[3] Univ Calif Los Angeles, Dept Mol Cell & Dev Biol, 610 Charles E Young Dr S, Los Angeles, CA 90095 USA
基金
巴西圣保罗研究基金会;
关键词
Isothiocyanate; Active compound; Sequencing; Epigenetics; Chemoprevention; HEPATOCELLULAR-CARCINOMA; INHIBITS GROWTH; STRAND BREAKS; THERAPY; SURVIVAL; ASSAY; EPIGENETICS; MECHANISM; KINASES; PATHWAY;
D O I
10.1016/j.fct.2019.111047
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Abnormal epigenetic alterations are one of the keystones of cancer development. Epigenetic targeting drugs have become a promising and effective cancer therapy strategy. However, due to the high toxicity and unclear mechanisms of action of these drugs, natural compounds that cause epigenetic modulation have also been studied. Sulforaphane (SFN) is a promising bioactive compound for epigenetic targeting therapy. In this study, we investigate the effects of SFN on gene expression and DNA methylation in human hepatocellular carcinoma cells (HepG2). Using high throughput technologies in combination with cell-based assays, we find SFN is a potent anticancer agent, as it induces DNA damage, mitotic spindle abnormalities followed by apoptosis and proliferation inhibition in HepG2 cells. Our results show the upregulation of DNA damage response and cell cycle checkpoint genes. Also, we find the downregulation of cellular pathways frequently overexpressed in human cancer. As expected, SFN exerts epigenetic modulation effects by inhibiting histone deacetylases (HDACs). SFN might affect the activity of oncogenic transcription factors through methylation of its binding sites motifs. Our findings offer insights into SFN chemopreventive molecular effects in HepG2 cells and highlight SFN as a valuable natural approach to cancer therapy for future investigation.
引用
收藏
页数:12
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