Abstract
Epigenetic regulation of gene expression is an emerging target to treat several human diseases including cancers. In cancers, expressions of many tumor suppressor genes are suppressed by hyper-methylation in their regulatory regions. Herein, we describe a novel carbazole SH-I-14 that decreased the level of the acetyl-STAT3 at the K685 residue. Mutation analysis revealed that SH-I-14 disrupted STAT3-DNMT1 interaction by removing acetyl group from K685 of STAT3. Finally, the inhibition of STAT3-DNMT1 interaction by SH-I-14 resulted in re-expression of tumor suppressor genes such as VHL and PDLIM4 through de-methylation of their promoter regions. In addition, SH-I-14 showed anti-proliferative effect in triple-negative breast cancer (TNBC) cell lines in vitro and anti-tumor effect in a mouse xenograft model of MDAMB- 231 tumor. Taken together, our results suggest that targeting acetyl-STAT3 (K685) provides potential therapeutic opportunity to treat a subset of human cancers.
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Kang, H. J., Yi, Y. W., Hou, S. J., Kim, H. J., Kong, Y., Bae, I., & Brown, M. L. (2017). Disruption of STAT3-DNMT1 interaction by SH-I-14 induces reexpression of tumor suppressor genes and inhibits growth of triple-negative breast tumor. Oncotarget, 8(48), 83457–83468. https://doi.org/10.18632/oncotarget.4054
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