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首页> 外文期刊>Molecular pharmacology. >Progesterone receptor (PR) isoforms PRA and PRB differentially regulate expression of the breast cancer resistance protein in human placental choriocarcinoma BeWo cells.
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Progesterone receptor (PR) isoforms PRA and PRB differentially regulate expression of the breast cancer resistance protein in human placental choriocarcinoma BeWo cells.

机译:孕酮受体(PR)亚型PRA和PRB差异性调节人胎盘绒毛膜癌BeWo细胞中乳腺癌抗性蛋白的表达。

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摘要

Breast cancer resistance protein (BCRP) plays a significant role in drug disposition and in conferring multidrug resistance in cancer cells. Previous studies have shown that steroid hormones such as 17beta-estradiol and progesterone can affect BCRP expression in cancer cells. In this study, we investigated the molecular mechanism by which BCRP expression in human placental choriocarcinoma BeWo cells is regulated by progesterone. Transfection of the progesterone receptor (PR) isoforms PRA and PRB resulted in a similarly increased expression of PRA and PRB, respectively. However, progesterone significantly increased BCRP expression and activity only in PRB-transfected cells. This stimulatory effect of progesterone was abrogated by the PR antagonist mifepristone (RU-486). Consistently, transcriptional activity of the BCRP promoter was induced 2- to 6-fold by 10(-8) to 10(-5) M progesterone in PRB-transfected cells. Progesterone had little effect on BCRP expression and activity and transcriptional activityof the BCRP promoter in PRA-transfected cells; however, cotransfection of PRA and PRB significantly decreased the progesterone-response compared with that in cells transfected with only PRB. Mutations in a novel progesterone response element (PRE) identified between -243 to -115 bp of the BCRP promoter region significantly attenuated the progesterone-response in PRB-transfected cells, and deletion of the PRE nearly completely abrogated the progesterone effect. Specific binding of both PRA and PRB to the BCRP promoter through the identified PRE was confirmed using the electrophoretic mobility shift assay. Collectively, progesterone induces BCRP expression in BeWo cells via PRB but not PRA. PRA represses the PRB activity. Thus, PRA and PRB differentially regulate BCRP expression in BeWo cells.
机译:乳腺癌抗性蛋白(BCRP)在药物配置和赋予癌细胞多药耐药性中起着重要作用。先前的研究表明,类固醇激素(例如17β-雌二醇和孕酮)可影响癌细胞中BCRP的表达。在这项研究中,我们研究了黄体酮调节人胎盘绒毛膜癌BeWo细胞中BCRP表达的分子机制。孕激素受体(PR)亚型PRA和PRB的转染分别导致PRA和PRB的表达类似地增加。但是,仅在PRB转染的细胞中,孕酮显着增加了BCRP的表达和活性。黄体酮的这种刺激作用被PR拮抗剂米非司酮(RU-486)废除了。一致地,在PRB转染的细胞中,BCRP启动子的转录活性被10(-8)至10(-5)M孕酮诱导2至6倍。黄体酮对PRA转染的细胞中BCRP表达和BCRP启动子活性及转录活性影响不大。然而,与仅用PRB转染的细胞相比,PRA和PRB的共转染显着降低了孕酮反应。在BCRP启动子区域的-243至-115 bp之间鉴定的新型孕激素反应元件(PRE)中的突变显着减弱了PRB转染细胞中的孕酮反应,PRE的缺失几乎完全消除了孕酮作用。使用电泳迁移率变动分析法证实了PRA和PRB通过鉴定的PRE与BCRP启动子的特异性结合。集体地,孕酮通过PRB而不是PRA诱导BeWo细胞中BCRP表达。 PRA抑制PRB活动。因此,PRA和PRB差异调节BeWo细胞中的BCRP表达。

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