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黏连蛋白SMC1抑制核受体CAR介导的外源性物质对人细胞色素P450基因的协同激活作用。

Cohesin protein SMC1 represses the nuclear receptor CAR-mediated synergistic activation of a human P450 gene by xenobiotics.

作者信息

Inoue Kaoru, Borchers Christoph H, Negishi Masahiko

机构信息

Pharmacogenetics Section, Laboratory of Reproductive and Developmental Toxicology, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC 27709, USA.

出版信息

Biochem J. 2006 Aug 15;398(1):125-33. doi: 10.1042/BJ20060109.

Abstract

CAR (constitutive active/androstane receptor) regulates both the distal enhancer PBREM (phenobarbital-responsive enhancer module) and the proximal element OARE [OA (okadaic acid) response element] to synergistically up-regulate the endogenous CYP2B6 (where CYP is cytochrome P450) gene in HepG2 cells. In this up-regulation, CAR acts as both a transcription factor and a co-regulator, directly binding to and enhancing PBREM upon activation by xenobiotics such as TCPOBOP {1,4-bis-[2-(3,5-dichloropyridyloxy)]benzene} and indirectly associating with the OARE in response to OA [Swales, Kakizaki, Yamamoto, Inoue, Kobayashi and Negishi (2005) J. Biol. Chem. 280, 3458-3466]. We have now identified the cohesin protein SMC1 (structural maintenance of chromosomes 1) as a CAR-binding protein and characterized it as a negative regulator of OARE activity, thus repressing synergy. Treatment with SMC1 small interfering RNA augmented the synergistic up-regulation of CYP2B6 expression 20-fold in HepG2 cells, while transient co-expression of spliced form of SMC1 abrogated the synergistic activation of a 1.8 kb CYP2B6 promoter. SMC1 indirectly binds to a 19 bp sequence (-236/-217) immediately downstream from the OARE in the CYP2B6 promoter. Both DNA affinity and chromatin immunoprecipitation assays showed that OA treatment dissociates SMC1 from the CYP2B6 promoter, reciprocating the indirect binding of CAR to OARE. These results are consistent with the conclusion that SMC1 binding represses OARE activity and its dissociation allows the recruitment of CAR to the OARE, synergizing PBREM activity and the expression of the CYP2B6 gene.

摘要

组成型活性/雄甾烷受体(CAR)可调控远端增强子苯巴比妥反应性增强子模块(PBREM)和近端元件冈田酸反应元件(OARE),从而协同上调HepG2细胞中内源性细胞色素P450 2B6(CYP2B6)基因的表达。在这种上调过程中,CAR既作为转录因子又作为共调节因子,在被诸如1,4-双-[2-(3,5-二氯吡啶氧基)]苯(TCPOBOP)等异种生物激活后,直接结合并增强PBREM,同时响应冈田酸(OA)与OARE间接结合[斯韦尔斯、柿崎、山本、井上、小林和根岸(2005年)《生物化学杂志》280卷,3458 - 3466页]。我们现已鉴定出黏连蛋白SMC1(染色体结构维持蛋白1)为一种CAR结合蛋白,并将其表征为OARE活性的负调节因子,从而抑制协同作用。用SMC1小干扰RNA处理可使HepG2细胞中CYP2B6表达的协同上调增加20倍,而瞬时共表达剪接形式的SMC1则消除了1.8 kb CYP2B6启动子的协同激活作用。SMC1间接结合于CYP2B6启动子中OARE下游紧邻的一个19 bp序列(-236 / -217)。DNA亲和分析和染色质免疫沉淀分析均表明,OA处理可使SMC1从CYP2B6启动子上解离,这与CAR与OARE的间接结合相互对应。这些结果与以下结论一致:SMC1的结合抑制OARE活性,其解离使得CAR能够募集至OARE,从而协同PBREM活性并促进CYP2B6基因的表达。

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