School of Pharmacy, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Int J Biol Sci. 2021 May 5;17(8):1895-1908. doi: 10.7150/ijbs.59855. eCollection 2021.
Ovarian cancer is a common cause of death among gynecological cancers. Although ovarian cancer initially responds to chemotherapy, frequent recurrence in patients remains a therapeutic challenge. Pyruvate kinase M2 (PKM2) plays a pivotal role in regulating cancer cell survival. However, its therapeutic role remains unclear. Here, we investigated the anticancer effects of compound 3K, a specific PKM2 inhibitor, on the regulation of autophagic and apoptotic pathways in SK-OV-3 (PKM2-overexpressing human ovarian adenocarcinoma cell line). The anticancer effect of compound 3K was examined using MTT and colony formation assays in SK-OV-3 cells. PKM2 expression was positively correlated with the severity of the tumor, and expression of pro-apoptotic proteins increased in SK-OV-3 cells following compound 3K treatment. Compound 3K induced AMPK activation, which was accompanied by mTOR inhibition. Additionally, this compound inhibited glycolysis, resulting in reduced proliferation of SK-OV-3 cells. Compound 3K treatment suppressed tumor progression in an xenograft model. Our findings suggest that the inhibition of PKM2 by compound 3K affected the Warburg effect and induced autophagic cell death. Therefore, use of specific PKM2 inhibitors to block the glycolytic pathway and target cancer cell metabolism represents a promising therapeutic approach for treating PKM2-overexpressing ovarian cancer.
卵巢癌是妇科癌症死亡的常见原因。尽管卵巢癌最初对化疗有反应,但患者频繁复发仍是治疗挑战。丙酮酸激酶 M2 (PKM2) 在调节癌细胞存活中发挥关键作用。然而,其治疗作用尚不清楚。在这里,我们研究了化合物 3K(一种特异性 PKM2 抑制剂)对 SK-OV-3(PKM2 过表达的人卵巢腺癌细胞系)中自噬和凋亡途径的调节的抗癌作用。在 SK-OV-3 细胞中,通过 MTT 和集落形成测定法来检查化合物 3K 的抗癌作用。PKM2 的表达与肿瘤的严重程度呈正相关,并且在 SK-OV-3 细胞中用化合物 3K 处理后,促凋亡蛋白的表达增加。化合物 3K 诱导 AMPK 激活,同时抑制 mTOR。此外,该化合物抑制糖酵解,导致 SK-OV-3 细胞增殖减少。化合物 3K 处理抑制了异种移植模型中的肿瘤进展。我们的研究结果表明,化合物 3K 抑制 PKM2 影响了瓦博格效应并诱导自噬性细胞死亡。因此,使用特异性 PKM2 抑制剂阻断糖酵解途径并靶向癌细胞代谢代表了治疗 PKM2 过表达卵巢癌的一种有前途的治疗方法。