Induction of E-cadherin in lung cancer and interaction with growth suppression by histone deacetylase inhibition

肺癌中 E-钙粘蛋白的诱导以及与组蛋白去乙酰化酶抑制的生长抑制相互作用

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作者:Masatoshi Kakihana, Tatsuo Ohira, Daniel Chan, Robin B Webster, Harubumi Kato, Harry A Drabkin, Robert M Gemmill

Conclusions

These results support the role of ZEB proteins and HDAC inhibitors in the pathogenesis and treatment of lung cancer.

Methods

NSCLC cell lines were treated with HDAC inhibitors and analyzed for E-cadherin induction, growth inhibition and apoptosis. National Cancer Institute-H157 cells expressing ectopic E-cadherin were tested for tumorigenicity in murine xenografts.

Results

We found that treatment with MS-275, compared to vorinostat (SAHA), valproic acid or trichostatin A, was most effective in E-cadherin up-regulation and persistence in non-small cell lung cancers. As with other tumor types and HDAC inhibitors, MS-275 inhibited growth and induced apoptosis. Importantly, blocking E-cadherin induction by short hairpin RNA resulted in less inhibition by MS-275, implicating the epithelial to mesenchymal phenotype process as a contributing factor. In contrast to H460 and H661, H157 cells were resistant to E-cadherin up-regulation by HDAC inhibitors. However, E-cadherin was restored, in a synergistic manner, by combined knockdown of ZEB-1 and ZEB-2. In addition, H157 cells stably transfected with E-cadherin were markedly attenuated in their tumor forming ability. Lastly, combining MS-275 with the microtubule stabilizing agent, paclitaxel, or 17-(allylamino)-17-demethoxygeldanamycin, a heat shock protein 90 inhibitor, resulted in synergistic growth inhibition. Since MS-275 has no reported activity against HDAC6, which regulates both microtubule and heat shock protein 90 functions, other mechanisms of synergy are anticipated. Conclusions: These results support the role of ZEB proteins and HDAC inhibitors in the pathogenesis and treatment of lung cancer.

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