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人类Fas启动子的激活依赖性转录调控需要募集NF-κB p50-p65。

Activation-dependent transcriptional regulation of the human Fas promoter requires NF-kappaB p50-p65 recruitment.

作者信息

Chan H, Bartos D P, Owen-Schaub L B

机构信息

Department of Immunology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Mol Cell Biol. 1999 Mar;19(3):2098-108. doi: 10.1128/MCB.19.3.2098.

Abstract

Fas (CD95) and Fas ligand (CD95L) are an interacting receptor-ligand pair required for immune homeostasis. Lymphocyte activation results in the upregulation of Fas expression and the acquisition of sensitivity to FasL-mediated apoptosis. Although Fas upregulation is central to the preservation of immunologic tolerance, little is known about the molecular machinery underlying this process. To investigate the events involved in activation-induced Fas upregulation, we have examined mRNA accumulation, fas promoter activity, and protein expression in the Jurkat T-cell line treated with phorbol myristate acetate and ionomycin (P/I), pharmacological mimics of T-cell receptor activation. Although resting Jurkat cells express Fas, Fas mRNA was induced approximately 10-fold in 2 h upon P/I stimulation. Using sequential deletion mutants of the human fas promoter in transient transfection assays, we identified a 47-bp sequence (positions -306 to -260 relative to the ATG) required for activation-driven fas upregulation. Sequence analysis revealed the presence of a previously unrecognized composite binding site for both the Sp1 and NF-kappaB transcription factors at positions -295 to -286. Electrophoretic mobility shift assay (EMSA) and supershift analyses of this region documented constitutive binding of Sp1 in unactivated nuclear extracts and inducible binding of p50-p65 NF-kappaB heterodimers after P/I activation. Sp1 and NF-kappaB transcription factor binding was shown to be mutually exclusive by EMSA displacement studies with purified recombinant Sp1 and recombinant p50. The functional contribution of the kappaB-Sp1 composite site in P/I-inducible fas promoter activation was verified by using kappaB-Sp1 concatamers (-295 to -286) in a thymidine kinase promoter-driven reporter construct and native promoter constructs in Jurkat cells overexpressing IkappaB-alpha. Site-directed mutagenesis of the critical guanine nucleotides in the kappaB-Sp1 element documented the essential role of this site in activation-dependent fas promoter induction.

摘要

Fas(CD95)和Fas配体(CD95L)是免疫稳态所需的相互作用的受体-配体对。淋巴细胞活化导致Fas表达上调,并获得对FasL介导的细胞凋亡的敏感性。尽管Fas上调对于维持免疫耐受至关重要,但对于该过程背后的分子机制知之甚少。为了研究激活诱导的Fas上调所涉及的事件,我们检测了佛波酯肉豆蔻酸酯乙酸酯和离子霉素(P/I)处理的Jurkat T细胞系中mRNA积累、fas启动子活性和蛋白质表达,P/I是T细胞受体激活的药理学模拟物。尽管静息的Jurkat细胞表达Fas,但在P/I刺激后2小时内,Fas mRNA被诱导约10倍。在瞬时转染实验中,使用人fas启动子的连续缺失突变体,我们鉴定出一个47 bp的序列(相对于ATG为-306至-260位),它是激活驱动的fas上调所必需的。序列分析显示,在-295至-286位存在一个先前未被识别的Sp1和NF-κB转录因子的复合结合位点。对该区域的电泳迁移率变动分析(EMSA)和超迁移分析表明,在未活化的核提取物中Sp1组成性结合,在P/I激活后p50-p65 NF-κB异二聚体可诱导性结合。通过用纯化的重组Sp1和重组p50进行EMSA置换研究表明,Sp1和NF-κB转录因子结合是相互排斥的。通过在胸苷激酶启动子驱动的报告构建体中使用κB-Sp1串联体(-295至-286)以及在过表达IκB-α的Jurkat细胞中的天然启动子构建体,验证了κB-Sp1复合位点在P/I诱导的fas启动子激活中的功能贡献。对κB-Sp1元件中关键鸟嘌呤核苷酸进行定点诱变,证明了该位点在激活依赖性fas启动子诱导中的重要作用。

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