首页> 外文期刊>Molecular and Cellular Biology >The New Core Promoter Element XCPE1 (X Core Promoter Element 1) Directs Activator-, Mediator-, and TATA-Binding Protein-Dependent but TFIID-Independent RNA Polymerase II Transcription from TATA-Less Promoters
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The New Core Promoter Element XCPE1 (X Core Promoter Element 1) Directs Activator-, Mediator-, and TATA-Binding Protein-Dependent but TFIID-Independent RNA Polymerase II Transcription from TATA-Less Promoters

机译:新的核心启动子元件XCPE1(X核心启动子元件1)指导活化剂,介体和TATA结合蛋白依赖性的TATA-Less启动子的转录依赖性,但不依赖TFIID的RNA聚合酶II转录。

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The core promoter is a critical DNA element required for accurate transcription and regulation of transcription. Several core promoter elements have been previously identified in eukaryotes, but those cannot account for transcription from most RNA polymerase II-transcribed genes. Additional, as-yet-unidentified core promoter elements must be present in eukaryotic genomes. From extensive analyses of the hepatitis B virus X gene promoter, here we identify a new core promoter element, XCPE1 (the X gene core promoter element 1), that drives RNA polymerase II transcription. XCPE1 is located between nucleotides ?8 and +2 relative to the transcriptional start site (+1) and has a consensus sequence of G/A/T-G/C-G-T/C-G-G-G/A-A-G/C+1-A/C. XCPE1 shows fairly weak transcriptional activity alone but exerts significant, specific promoter activity when accompanied by activator-binding sites. XCPE1 is also found in the core promoter regions of about 1% of human genes, particularly in poorly characterized TATA-less genes. Our in vitro transcription studies suggest that the XCPE1-driven transcription can be highly active in the absence of TFIID because it can utilize either free TBP or the complete TFIID complex. Our findings suggest the possibility of the existence of a TAF1 (TFIID)-independent transcriptional initiation mechanism that may be used by a category of TATA-less promoters in higher eukaryotes.
机译:核心启动子是精确转录和转录调控所需的关键DNA元件。先前已经在真核生物中鉴定了几种核心启动子元件,但是这些不能解释大多数RNA聚合酶II转录基因的转录。真核生物基因组中还必须存在其他尚未鉴定的核心启动子元件。通过对乙型肝炎病毒X基因启动子的广泛分析,在这里我们确定了一个新的核心启动子元件XCPE1( X 基因 c ore p 旋转子 e lement 1 ),它驱动RNA聚合酶II转录。 XCPE1位于相对于转录起始位点(+1)的核苷酸?8和+2之间,并具有G / A / TG / CGT / CGGG / AAG / C +1 -A的共有序列/C。 XCPE1单独显示出相当弱的转录活性,但在伴随激活剂结合位点的情况下发挥重要的特异性启动子活性。 XCPE1还存在于约1%的人类基因的核心启动子区域,尤其是在表征较差的不含TATA的基因中。我们的体外转录研究表明,在没有TFIID的情况下,XCPE1驱动的转录可能具有很高的活性,因为它可以利用游离的TBP或完整的TFIID复合体。我们的发现表明存在一种可能存在于TAF1(TFIID)无关的转录起始机制的可能性,该机制可能被高等真核生物中的一类TATA缺失型启动子所使用。

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