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Sp3、GATA-6和类固醇生成因子1对人肾上腺NCI-H295A细胞中细胞色素b5基因转录的调控

Regulation of cytochrome b5 gene transcription by Sp3, GATA-6, and steroidogenic factor 1 in human adrenal NCI-H295A cells.

作者信息

Huang Ningwu, Dardis Andrea, Miller Walter L

机构信息

Department of Pediatrics, University of California, San Francisco, San Francisco, California 94143-0978, USA.

出版信息

Mol Endocrinol. 2005 Aug;19(8):2020-34. doi: 10.1210/me.2004-0411. Epub 2005 Apr 14.

Abstract

Sex steroid synthesis requires the 17,20 lyase activity of P450c17, which is enhanced by cytochrome b5, acting as an allosteric factor to promote association of P450c17 with its electron donor, P450 oxidoreductase. Cytochrome b5 is preferentially expressed in the fetal adrenal and postadrenarchal adrenal zona reticularis; the basis of this tissue-specific, developmentally regulated transcription of the b5 gene is unknown. We found b5 expression in all cell lines tested, including human adrenal NCI-H295A cells, where its mRNA is reduced by cAMP and phorbol ester. Multiple sites, between -83 and -122 bp upstream from the first ATG, initiate transcription. Deletional mutagenesis localized all detectable promoter activity within -327/+15, and deoxyribonuclease I footprinting identified protein binding at -72/-107 and -157/-197. DNA segments -65/-40, -114/-70 and -270/-245 fused to TK32/Luc yielded significant activity, and mutations in their Sp sites abolished that activity; electrophoretic mobility shift assay (EMSA) showed that Sp3, but not Sp1, binds to these Sp sites. Nuclear factor 1 (NF-1) and GATA-6, but not GATA-4 bind to the NF-1 and GATA sites in -157/-197. In Drosophila S2 cells, Sp3 increased -327/Luc activity 58-fold, but Sp1 and NF-1 isoforms were inactive. Mutating the three Sp sites ablated activity without or with cotransfection of Sp1/Sp3. In NCI-H295A cells, mutating the three Sp sites reduced activity to 39%; mutating the Sp, GATA, and NF-1 sites abolished activity. In JEG-3 cells, GATA-4 was inactive, GATA-6 augmented -327/Luc activity to 231% over the control, and steroidogenic factor 1 augmented activity to 655% over the control; these activities required the Sp and NF-1 sites. Transcription of cytochrome b5 shares many features with the regulation of P450c17, whose activity it enhances.

摘要

性类固醇合成需要细胞色素P450c17的17,20裂解酶活性,细胞色素b5可增强该活性,它作为变构因子促进P450c17与其电子供体P450氧化还原酶的结合。细胞色素b5在胎儿肾上腺及肾上腺初现后的肾上腺网状带中优先表达;b5基因这种组织特异性、发育调控性转录的基础尚不清楚。我们在所有测试的细胞系中都发现了b5的表达,包括人肾上腺NCI-H295A细胞,其mRNA在cAMP和佛波酯作用下减少。在第一个ATG上游-83至-122 bp之间有多个位点启动转录。缺失诱变将所有可检测到的启动子活性定位在-327/+15范围内,脱氧核糖核酸酶I足迹法确定了在-72/-107和-157/-197处有蛋白质结合。与TK32/Luc融合的DNA片段-65/-40、-114/-70和-270/-245产生显著活性,其Sp位点的突变消除了该活性;电泳迁移率变动分析(EMSA)表明,与这些Sp位点结合的是Sp3而非Sp1。核因子1(NF-1)和GATA-6,但不是GATA-4,与-157/-197中的NF-1和GATA位点结合。在果蝇S2细胞中,Sp3使-327/Luc活性增加58倍,但Sp1和NF-1亚型无活性。无论有无Sp1/Sp3共转染,突变三个Sp位点都会消除活性。在NCI-H295A细胞中,突变三个Sp位点使活性降至39%;突变Sp、GATA和NF-1位点则消除活性。在JEG-3细胞中,GATA-4无活性,GATA-6使-327/Luc活性比对照增加到231%,类固醇生成因子1使活性比对照增加到655%;这些活性需要Sp和NF-1位点。细胞色素b5的转录与P450c17的调控有许多共同特征,而细胞色素b5的活性可增强P450c17的活性。

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