Lin Wenwei, Wu Jing, Dong Hanqing, Bouck David, Zeng Fu-Yue, Chen Taosheng
Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
J Biol Chem. 2008 Nov 7;283(45):30650-7. doi: 10.1074/jbc.M806132200. Epub 2008 Sep 9.
The human pregnane X receptor (hPXR) regulates the expression of critical drug metabolism enzymes. One of such enzymes, cytochrome P450 3A4 (CYP3A4), plays critical roles in drug metabolism in hepatocytes that are either quiescent or passing through the cell cycle. It has been well established that the expression of P450, such as CYP3A4, is markedly reduced during liver development or regeneration. Numerous studies have implicated cellular signaling pathways in modulating the functions of nuclear receptors, including hPXR. Here we report that inhibition of cyclin-dependent kinases (Cdks) by kenpaullone and roscovitine (two small molecule inhibitors of Cdks that we identified in a screen for compounds that activate hPXR) leads to activation of hPXR-mediated CYP3A4 gene expression in HepG2 human liver carcinoma cells. Consistent with this finding, activation of Cdk2 attenuates the activation of CYP3A4 gene expression. In vitro kinase assays revealed that Cdk2 directly phosphorylates hPXR. A phosphomimetic mutation of a putative Cdk phosphorylation site, Ser(350), significantly impairs the function of hPXR, whereas a phosphorylation-deficient mutation confers resistance to Cdk2. Using HepG2 that has been stably transfected with hPXR and the CYP3A4-luciferase reporter, enriched in different phases of the cell cycle, we found that hPXR-mediated CYP3A4 expression is greatly reduced in the S phase. Our results indicate for the first time that Cdk2 negatively regulates the activity of hPXR, and suggest an important role for Cdk2 in regulating hPXR activity and CYP3A4 expression in hepatocytes passing through the cell cycle, such as those in fetal or regenerating adult liver.
人孕烷X受体(hPXR)可调节关键药物代谢酶的表达。其中一种酶,细胞色素P450 3A4(CYP3A4),在静止或处于细胞周期的肝细胞的药物代谢中起关键作用。众所周知,诸如CYP3A4之类的P450的表达在肝脏发育或再生过程中会显著降低。大量研究表明细胞信号通路在调节包括hPXR在内的核受体功能方面发挥作用。在此我们报告,肯帕罗宁和罗斯考维汀(我们在筛选激活hPXR的化合物时鉴定出的两种细胞周期蛋白依赖性激酶(Cdks)小分子抑制剂)对Cdks的抑制作用会导致HepG2人肝癌细胞中hPXR介导的CYP3A4基因表达的激活。与这一发现一致,Cdk2的激活会减弱CYP3A4基因表达的激活。体外激酶分析表明Cdk2直接使hPXR磷酸化。假定的Cdk磷酸化位点Ser(350)的模拟磷酸化突变会显著损害hPXR的功能,而磷酸化缺陷突变则赋予对Cdk2的抗性。使用稳定转染了hPXR和CYP3A4 - 荧光素酶报告基因且富集于细胞周期不同阶段的HepG2细胞,我们发现hPXR介导的CYP3A4表达在S期大幅降低。我们的结果首次表明Cdk2负向调节hPXR的活性,并提示Cdk2在调节处于细胞周期的肝细胞(如胎儿或再生的成年肝脏中的肝细胞)的hPXR活性和CYP3A4表达中起重要作用。