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主要的人类孕烷X受体(PXR)剪接变体PXR.2表现出显著减弱的配体激活转录调控。

The major human pregnane X receptor (PXR) splice variant, PXR.2, exhibits significantly diminished ligand-activated transcriptional regulation.

作者信息

Lin Yvonne S, Yasuda Kazuto, Assem Mahfoud, Cline Cynthia, Barber Joe, Li Chia-Wei, Kholodovych Vladyslav, Ai Ni, Chen J Don, Welsh William J, Ekins Sean, Schuetz Erin G

机构信息

Department of Pharmaceutical Sciences, St. Jude Children's Hospital, Memphis, TN 38105, USA.

出版信息

Drug Metab Dispos. 2009 Jun;37(6):1295-304. doi: 10.1124/dmd.108.025213. Epub 2009 Feb 27.

Abstract

The pregnane X receptor (PXR; PXR.1) can be activated by structurally diverse lipophilic ligands. PXR.2, an alternatively spliced form of PXR, lacks 111 nucleotides encoding 37 amino acids in the ligand binding domain. PXR.2 bound a classic CYP3A4 PXR response element (PXRE) in electrophoretic mobility shift assays, but transfected PXR.2 failed to transactivate a CYP3A4-promoter-luciferase reporter plasmid in HepG2 cells treated with various PXR ligands. Cotransfection experiments showed that PXR.2 behaved as a dominant negative, interfering with PXR.1/rifampin activation of CYP3A4-PXRE-LUC. In HepG2 and LS180 cells stably transduced with PXR.1, PXR target genes (CYP3A4, MDR1, CYP2B6, and UGT1A1) were higher than mock-transduced cells in the absence of ligand and were further induced in the presence of rifampin. In contrast, PXR.2 stably introduced into the same host cells failed to induce target genes over levels in mock-transfected cells after drug treatment. Our homology modeling suggests that ligands bind PXR.1 more favorably, probably because of the presence of a key disordered loop region, which is missing in PXR.2. Yeast two-hybrid assays revealed that, even in the presence of ligand, the corepressors remain tightly bound to PXR.2, and coactivators are unable to bind at helix 12. In summary, PXR.2 can bind to PXREs but fails to transactivate target genes because ligands do not bind the ligand binding domain of PXR.2 productively, corepressors remain tightly bound, and coactivators are not recruited to PXR.2.

摘要

孕烷X受体(PXR;PXR.1)可被结构多样的亲脂性配体激活。PXR.2是PXR的一种可变剪接形式,在配体结合域缺少编码37个氨基酸的111个核苷酸。在电泳迁移率变动分析中,PXR.2结合了经典的CYP3A4 PXR反应元件(PXRE),但在用各种PXR配体处理的HepG2细胞中,转染的PXR.2未能激活CYP3A4启动子-荧光素酶报告质粒。共转染实验表明,PXR.2表现为显性负性,干扰PXR.1/利福平对CYP3A4-PXRE-LUC的激活。在用PXR.1稳定转导的HepG2和LS180细胞中,在无配体的情况下,PXR靶基因(CYP3A4、MDR1、CYP2B6和UGT1A1)高于模拟转导细胞,在有 rifampin的情况下进一步诱导。相比之下,稳定导入相同宿主细胞的PXR.2在药物处理后未能诱导靶基因超过模拟转染细胞中的水平。我们的同源性建模表明,配体与PXR.1的结合更有利,可能是因为存在一个关键的无序环区域,而PXR.2中缺少该区域。酵母双杂交分析表明,即使在有配体的情况下,共抑制因子仍与PXR.2紧密结合,共激活因子无法在螺旋12处结合。总之,PXR.2可与PXRE结合,但无法激活靶基因,因为配体不能有效地结合PXR.2的配体结合域,共抑制因子仍紧密结合,且共激活因子未被招募到PXR.2。

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