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The Murine G+C-Rich Promoter Binding Protein mGPBP Is Required for Promoter-Specific Transcription

机译:小鼠G + C丰富的启动子结合蛋白mGPBP是启动子特异的转录所必需的。

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摘要

The archetypal TATA-box deficient G+C-rich promoter of the murine adenosine deaminase gene (Ada) requires a 48-bp minimal self-sufficient promoter element (MSPE) for function. This MSPE was used to isolate a novel full-length cDNA clone that encodes a 66-kDa murine G+C-rich promoter binding protein (mGPBP). The mGPBP mRNAs are ubiquitously expressed as either 3.0- or 3.5-kb forms differing in 3′ polyadenylation site usage. Purified recombinant mGPBP, in the absence of any other mammalian cofactors, binds specifically to both the murine Ada gene promoter's MSPE and the nonhomologous human Topo IIα gene's G+C-rich promoter. In situ binding assays, immunoprecipitation, and Western blot analyses demonstrated that mGPBP is a nuclear factor that can form complexes with TATA-binding protein, TFIIB, TFIIF, RNA polymerase II, and P300/CBP both in vitro and in intact cells. In cotransfection assays, increased mGPBP expression transactivated the murine Ada gene's promoter. Sequestering of GPBP present in HeLa cell nuclear extract by immunoabsorption completely and reversibly suppressed extract-dependent in vitro transcription from the murine Ada gene's G+C-rich promoter. However, transcription from the human Topo IIα gene's TATA box-containing G+C-rich promoter was only partially suppressed and the adenovirus major late gene's classical TATA box-dependent promoter is totally unaffected under identical assay conditions. These results implicate GPBP as a requisite G+C-rich promoter-specific transcription factor and provide a mechanistic basis for distinguishing transcription initiated at a TATA box-deficient G+C-rich promoter from that initiated at a TATA box-dependent promoter.
机译:鼠腺苷脱氨酶基因(Ada)的原型TATA框缺陷型富含G + C的启动子需要48 bp的最小自给启动子元件(MSPE)才能发挥功能。该MSPE用于分离新型全长cDNA克隆,该克隆编码66 kDa富含鼠类G + C的启动子结合蛋白(mGPBP)。 mGPBP mRNA以3或3.5 kb形式普遍存在,其3'聚腺苷酸化位点使用方式不同。在没有任何其他哺乳动物辅助因子的情况下,纯化的重组mGPBP与鼠Ada基因启动子的MSPE和非同源人TopoIIα基因的富含G + C的启动子特异性结合。原位结合测定,免疫沉淀和Western印迹分析表明,mGPBP是一种核因子,可以在体外和完整细胞中与TATA结合蛋白,TFIIB,TFIIF,RNA聚合酶II和P300 / CBP形成复合物。在共转染试验中,增加的mGPBP表达可激活鼠Ada基因的启动子。通过免疫吸收隔离存在于HeLa细胞核提取物中的GPBP完全可逆地抑制了鼠Ada基因富含G + C的启动子的提取物依赖性体外转录。但是,从人类TopoIIα基因的TATA盒中富含G + C的启动子的转录仅被部分抑制,而腺病毒主要晚期基因的经典TATA盒依赖性启动子在相同的测定条件下完全不受影响。这些结果暗示GPBP是必需的富含G + C的启动子特异性转录因子,并为区分TATA框缺失的G + C丰富启动子启动的转录和TATA框依赖的启动子启动的转录提供了机制基础。

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