Abstract

BackgroundPolyphyllin I (PPI), a bioactive phytochemical extracted from the Rhizoma of Paris polyphylla, has been reported to exhibit anti-cancer activity. However, the detailed mechanism underlying this remains to be elucidated.MethodsCell viability and cell cycle distribution were measured using a 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT) and flow cytometry assays, respectively. The expression of enhancer of zeste homolog 2 (EZH2) mRNA was measured by quantitative real time PCR (qRT-PCR). Western blot analysis was performed to examine the phosphorylation and protein expression of stress-activated protein kinase/c-Jun N-terminal kinase (SAPK/JNK), p65, DNA methyltransferase 1 (DNMT1) and EZH2. Exogenous expression of p65, DNMT1, and EZH2 were carried out by transient transfection assays. Promoter activity of EZH2 gene was determined using Secrete-Pair Dual Luminescence Assay Kit. A xenografted tumor model in nude mice and bioluminescent imaging system were used to further test the effect of PPI in vivo.ResultsWe showed that PPI significantly inhibited growth and induced cell cycle arrest of non-small cell lung cancer (NSCLC) cells in a dose-dependent manner. Mechanistically, we found that PPI increased the phosphorylation of SAPK/JNK, reduced protein expression of p65 and DNMT1. The inhibitor of SAPK/JNK (SP600125) blocked the PPI-inhibited p65 and DNMT1 protein expression. Interestingly, exogenously expressed p65 overcame PPI-inhibited protein expression of DNMT1. Moreover, PPI reduced EZH2 protein, mRNA, and promoter activity; overexpression of EZH2 resisted the PPI-inhibited cell growth, and intriguingly, negative feedback regulation of SAPK/JNK signaling. Finally, exogenous expression of DNMT1 antagonized the PPI-suppressed EZH2 protein expression. Consistent with this, PPI inhibited tumor growth, protein expression levels of p65, DNMT1 and EZH2, and increased phosphorylation of SAPK/JNK in vivo.ConclusionOur results show that PPI inhibits growth of NSCLC cells through SAPK/JNK-mediated inhibition of p65 and DNMT1 protein levels, subsequently; this results in the reduction of EZH2 gene expression. The interactions among p65, DNMT1 and EZH2, and feedback regulation of SAPK/JNK by EZH2 converge on the overall responses of PPI. This study reveals a novel mechanism for regulating EZH2 gene in response to PPI and suggests a new strategy for NSCLC associated therapy.

Highlights

  • Polyphyllin I (PPI), a bioactive phytochemical extracted from the Rhizoma of Paris polyphylla, has been reported to exhibit anti-cancer activity

  • We demonstrated the inhibitory effect of polyphyllin I (PPI) on lung cancer cell growth through stress-activated protein kinase/c-Jun N-terminal kinase (SAPK/JNK)-mediated inhibition of Nuclear factor-kappaB (NF-kB) subunit p65 and DNA methyltransferase 1 (DNMT1) protein levels, subsequently; this resulted in the reduction of enhancer of zeste homolog 2 (EZH2) gene expression

  • We believed that our findings provided the novel insight into the connection between SAPK/JNK signaling and expression of DNMT1 and EZH2 affected by PPI, and highlighted the tumor suppressor role of SAPK/JNK that was involved in the anti-tumor effects of PPI

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Summary

Introduction

Polyphyllin I (PPI), a bioactive phytochemical extracted from the Rhizoma of Paris polyphylla, has been reported to exhibit anti-cancer activity. Despite recent advances in clinical and experimental studies in the treatment of lung cancer, the prognosis still remains poor due to the uncountable recurrence and metastasis [1, 2]. There is an urgent need to search new agents with minimal side effects and improved treatment efficacy. These included components from Chinese medical herbal plants; among those, polyphyllin I (PPI) may be one of such candidates. PPI, a bioactive phytochemical extracted from the Rhizoma of Paris polyphylla, has been reported to possess preclinical anticancer efficacy in various cancer types [3,4,5,6]. The underlying molecular mechanisms in targeting lung cancer remain largely unknown

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