The Hormel Institute University of Minnesota, 801 16 Ave NE, Austin, MN 55912.
Cancer Prev Res (Phila). 2014 Jan;7(1):139-49. doi: 10.1158/1940-6207.CAPR-13-0117. Epub 2013 Nov 19.
The c-Jun N-terminal kinases (JNK) play an important role in many physiologic processes induced by numerous stress signals. Each JNK protein appears to have a distinct function in cancer, diabetes, or Parkinson's disease. Herein, we found that licochalcone A, a major phenolic constituent isolated from licorice root, suppressed JNK1 activity but had little effect on JNK2 in vitro activity. Although licochalcone A binds with JIP1 competitively with either JNK1 or JNK2, a computer simulation model showed that after licochalcone A binding, the ATP-binding cleft of JNK1 was distorted more substantially than that of JNK2. This could reduce the affinity of JNK1 more than JNK2 for ATP binding. Furthermore, licochalcone A inhibited JNK1-mediated, but not JNK2-mediated, c-Jun phosphorylation in both ex vivo and in vitro systems. We also observed that in colon and pancreatic cancer cell lines, JNK1 is highly expressed compared with normal cell lines. In cancer cell lines, treatment with licochalcone A or knocking down JNK1 expression suppressed colon and pancreatic cancer cell proliferation and colony formation. The inhibition resulted in G1 phase arrest and apoptosis. Moreover, an in vivo xenograft mouse study showed that licochalcone A treatment effectively suppressed the growth of HCT116 xenografts, without affecting the body weight of mice. These results show that licochalcone A is a selective JNK1 inhibitor. Therefore, we suggest that because of the critical role of JNK1 in colon cancer and pancreatic carcinogenesis, licochalcone A might have preventive or therapeutic potential against these devastating diseases.
c-Jun N-末端激酶(JNK)在许多由各种应激信号诱导的生理过程中发挥重要作用。每种 JNK 蛋白在癌症、糖尿病或帕金森病中似乎都具有独特的功能。在此,我们发现,从甘草根中分离得到的主要酚类成分甘草查尔酮 A 抑制 JNK1 活性,但对 JNK2 的体外活性影响很小。虽然甘草查尔酮 A 与 JNK1 或 JNK2 竞争结合 JIP1,但计算机模拟模型显示,甘草查尔酮 A 结合后,JNK1 的 ATP 结合裂隙的变形比 JNK2 更明显。这可能会降低 JNK1 与 ATP 结合的亲和力,而对 JNK2 的影响较小。此外,甘草查尔酮 A 抑制了 JNK1 介导的,但不是 JNK2 介导的,c-Jun 在体外和体内系统中的磷酸化。我们还观察到,在结肠和胰腺癌细胞系中,与正常细胞系相比,JNK1 高度表达。在癌细胞系中,甘草查尔酮 A 处理或敲低 JNK1 表达抑制了结肠和胰腺癌细胞的增殖和集落形成。抑制作用导致 G1 期停滞和细胞凋亡。此外,体内异种移植小鼠研究表明,甘草查尔酮 A 处理有效地抑制了 HCT116 异种移植物的生长,而不影响小鼠的体重。这些结果表明,甘草查尔酮 A 是一种选择性 JNK1 抑制剂。因此,我们认为,由于 JNK1 在结肠癌和胰腺癌发生中的关键作用,甘草查尔酮 A 可能具有预防或治疗这些毁灭性疾病的潜力。