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双查尔酮类似物通过抑制 Akt 介导的组蛋白去乙酰化酶 3 表达和 CDK2 T39 磷酸化,促进癌细胞 S 期阻滞。

Suppression of Akt-mediated HDAC3 expression and CDK2 T39 phosphorylation by a bichalcone analog contributes to S phase retardation of cancer cells.

机构信息

Department of Surgery, Division of Neurosurgery, Armed Force Taichung General Hospital, Taichung 40601, Taiwan.

Department of Medical Laboratory Science and Biotechnology, China Medical University, Taichung 40402, Taiwan.

出版信息

Eur J Pharmacol. 2018 Jun 15;829:141-150. doi: 10.1016/j.ejphar.2018.04.017. Epub 2018 Apr 14.

Abstract

Targeting cell cycle regulators has been a suggested mechanism for therapeutic cancer strategies. We report here that the bichalcone analog TSWU-CD4 induces S phase arrest of human cancer cells by inhibiting the formation of cyclin A-phospho (p)-cyclin-dependent kinase 2 (CDK2, threonine [Thr] 39) complexes, independent of mutant p53 expression. Ectopic expression of CDK2 (T39E), which mimics phosphorylation of the Thr 39 residue of CDK2, partially rescues the cells from TSWU-CD4-induced S phase arrest, whereas phosphorylation-deficient CDK2 (T39A) expression regulates cell growth with significant S phase arrest and enhances TSWU-CD4-triggered S phase arrest. Decreased histone deacetylase 3 (HDAC3) expression after TSWU-CD4 treatment was demonstrated, and TSWU-CD4 induced S phase arrest and inhibitory effects on cyclin A expression and CDK2 Thr 39 phosphorylation, while cyclin A-p-CDK2 (Thr 39) complex formation was suppressed by ectopic wild-type HDAC3 expression. The co-transfection of CDK2 (T39E) along with HDAC3 completely restored cyclin A expression, Thr 39-phosphorylated CDK2, cyclin A-p-CDK2 (Thr 39) complex formation, and the S phase population to normal levels. Protein kinase B (Akt) inactivation was required for TSWU-CD4-induced S phase cell cycle arrest, because constitutively active Akt1 blocks the induction of S phase arrest and the suppression of cyclin A and HDAC3 expression, CDK2 Thr 39 phosphorylation, and cyclin A-p-CDK2 (Thr 39) complex formation by TSWU-CD4. Taken together, our results indicate that TSWU-CD4 induces S phase arrest by inhibiting Akt-mediated HDAC3 expression and CDK2 Thr 39 phosphorylation to suppress the formation of cyclin A-p-CDK2 (Thr 39) complexes.

摘要

靶向细胞周期调节剂已被提议作为治疗癌症的策略机制。我们在此报告,双查耳酮类似物 TSWU-CD4 通过抑制 cyclin A-磷酸化(p)-细胞周期蛋白依赖性激酶 2(CDK2,苏氨酸 [Thr] 39)复合物的形成,诱导人癌细胞进入 S 期停滞,而与突变型 p53 表达无关。CDK2(T39E)的异位表达部分挽救了细胞免受 TSWU-CD4 诱导的 S 期停滞,而 CDK2(T39A)的磷酸化缺陷表达调节细胞生长,显著停滞在 S 期,并增强 TSWU-CD4 触发的 S 期停滞。TSWU-CD4 处理后显示组蛋白去乙酰化酶 3(HDAC3)表达减少,TSWU-CD4 诱导 S 期停滞和抑制 cyclin A 表达和 CDK2 Thr 39 磷酸化,而 cyclin A-p-CDK2(Thr 39)复合物形成被外源性野生型 HDAC3 表达抑制。CDK2(T39E)与 HDAC3 的共转染完全恢复 cyclin A 表达、Thr 39 磷酸化 CDK2、cyclin A-p-CDK2(Thr 39)复合物形成和 S 期细胞群至正常水平。蛋白激酶 B(Akt)失活是 TSWU-CD4 诱导的 S 期细胞周期停滞所必需的,因为组成型活性 Akt1 阻断了 S 期停滞的诱导以及 cyclin A 和 HDAC3 表达、CDK2 Thr 39 磷酸化和 cyclin A-p-CDK2(Thr 39)复合物形成的抑制作用。综上所述,我们的结果表明,TSWU-CD4 通过抑制 Akt 介导的 HDAC3 表达和 CDK2 Thr 39 磷酸化诱导 S 期停滞,从而抑制 cyclin A-p-CDK2(Thr 39)复合物的形成。

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