Yoshida Mitsuzi, Heike Yuji, Ohno Shigeo, Ikekawa Tetsuro, Wakasugi Hiro
National Cancer Center Research Institute, 5-1-1 Tsukiji, Chuo-ku, Tokyo 104-0045, Japan.
Int J Cancer. 2003 Jul 10;105(5):601-6. doi: 10.1002/ijc.11157.
Daphnane-type diterpene gnidimacrin (NSC 252940) shows significant antitumor activity against murine tumors and human tumor cell lines. This compound binds to and directly activates protein kinase C (PKC), arresting the cell cycle at the G(1) phase through inhibition of cdk2 activity in human K562 leukemia cells. In our study, we examined whether cellular PKC is involved in the antiproliferating effect of gnidimacrin. In a 24-hr exposure of K562 cells to high concentrations of bryostatin 1 (0.11-3.3 microM), both expression of PKC alpha and PKC betaII was downregulated, and thereafter these cells became resistant to gnidimacrin in response to the degree of PKC downregulation. In addition, PKC alpha and PKC betaII genes were transfected to gnidimacrin-resistant human hepatoma HLE cells that demonstrated positive expression of PKC alpha and negative expression of PKC betaII. PKC betaII gene-transfected cells became sensitive to gnidimacrin in relation to the degree of PKC betaII expression. The most sensitive clone to show 0.001 microg/mL (1.2 nM) as IC(50) in a continuous 4-day exposure was obtained. While PKC alpha gene-transfected cells exhibited an increase in PKC alpha expression and became sensitive to gnidimacrin, sensitivity was one-hundredth of that in PKC betaIotaIota gene-transfected cells. These results suggest that PKC, in particular PKC betaIotaIota, is necessary in the antitumor effect of gnidimacrin.
瑞香烷型二萜类化合物瑞香毒素(NSC 252940)对鼠类肿瘤和人类肿瘤细胞系显示出显著的抗肿瘤活性。该化合物可结合并直接激活蛋白激酶C(PKC),通过抑制人K562白血病细胞中的cdk2活性,使细胞周期停滞在G(1)期。在我们的研究中,我们检测了细胞PKC是否参与瑞香毒素的抗增殖作用。在K562细胞暴露于高浓度苔藓抑素1(0.11 - 3.3 microM)24小时后,PKCα和PKCβII的表达均下调,此后这些细胞对瑞香毒素产生抗性,抗性程度与PKC下调程度相关。此外,将PKCα和PKCβII基因转染至对瑞香毒素耐药的人肝癌HLE细胞,该细胞显示PKCα阳性表达和PKCβII阴性表达。PKCβII基因转染的细胞对瑞香毒素的敏感性与PKCβII表达程度相关。在连续4天暴露中,获得了对瑞香毒素最敏感的克隆,其IC(50)为0.001 microg/mL(1.2 nM)。虽然PKCα基因转染的细胞PKCα表达增加并对瑞香毒素敏感,但其敏感性仅为PKCβII基因转染细胞的百分之一。这些结果表明,PKC,尤其是PKCβII,在瑞香毒素的抗肿瘤作用中是必需的。