Wang Ming, Zhao Huange, Hu Juanjuan, Xu Zhen, Lin Yingying, Zhou Songlin
Key Laboratory of Tropical Translational Medicine of the Ministry of Education & Hainan Provincial Key Laboratory of Tropical Medicine, Hainan Medical University, Haikou, China.
Health and Family Planning Commission of Wanzai County of Jiangxi Province, Yichun, China.
Front Oncol. 2020 Feb 11;10:116. doi: 10.3389/fonc.2020.00116. eCollection 2020.
Penicilazaphilone C (PAC) is a novel azaphilonidal derivative isolated by our group that demonstrates good anticancer activities. Considering that its molecular mechanisms remain largely unknown, here we explore the molecular mechanisms of the anticancer activities of PAC against gastric cancer. The effects of PAC on cell growth, proliferation, and apoptosis were evaluated by MTT, BrdU, MTS, colony formation assays, Hoechst 33258 staining, and flow cytometry. Related proteins were examined by western blotting. Notch receptor expression was analyzed by RT-PCR. antitumor activities of PAC were observed in a nude mouse model. We found that compared to the controls, PAC treatment suppressed cell proliferation and promoted apoptosis in MGC-803 and SGC-7901 cells, and the Notch/PTEN/AKT axis was involved in the activating PAC-induced apoptosis. PAC treatment led to decreased levels of Notch (NTM), NICD, pPTEN, and pAKT compared to controls. PAC-induced inhibition of Notch-related protein expression levels and the resulting apoptosis were reversed by overexpression of Notch1 (NTM) or/and Notch2 (NTM). Moreover, PAC treatment clearly inhibited tumor growth in mice both bearing tumors derived from both MGC-803 and SGC-7901 cells. This work reveals that PAC induces the apoptosis by suppressing activation of Notch receptor proteolytic cleavage and subsequently blocking the PTEN/AKT signaling axis in gastric cancer cells. Thus, PAC is a potential alternative agent for the treatment of gastric cancer.
青霉氮杂菲酮C(PAC)是我们团队分离出的一种新型氮杂菲衍生物,具有良好的抗癌活性。鉴于其分子机制在很大程度上仍不清楚,在此我们探讨PAC对胃癌的抗癌活性分子机制。通过MTT、BrdU、MTS、集落形成试验、Hoechst 33258染色和流式细胞术评估PAC对细胞生长、增殖和凋亡的影响。通过蛋白质印迹法检测相关蛋白。通过RT-PCR分析Notch受体表达。在裸鼠模型中观察到PAC的抗肿瘤活性。我们发现,与对照组相比,PAC处理抑制了MGC-803和SGC-7901细胞的增殖并促进了凋亡,并且Notch/PTEN/AKT轴参与了激活PAC诱导的凋亡。与对照组相比,PAC处理导致Notch(NTM)、NICD、pPTEN和pAKT水平降低。Notch1(NTM)或/和Notch2(NTM)的过表达逆转了PAC诱导的Notch相关蛋白表达水平的抑制以及由此产生的凋亡。此外,PAC处理明显抑制了携带源自MGC-803和SGC-7901细胞肿瘤的小鼠的肿瘤生长。这项工作表明,PAC通过抑制Notch受体蛋白水解切割的激活并随后阻断胃癌细胞中的PTEN/AKT信号轴来诱导凋亡。因此,PAC是一种治疗胃癌的潜在替代药物。