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无TATA框启动子转录的特征分析:新型核心启动子元件XCPE2的鉴定及因子需求分析

Characterization of transcription from TATA-less promoters: identification of a new core promoter element XCPE2 and analysis of factor requirements.

作者信息

Anish Ramakrishnan, Hossain Mohammad B, Jacobson Raymond H, Takada Shinako

机构信息

Department of Biochemistry and Molecular Biology, Genes and Development Program of the Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

出版信息

PLoS One. 2009;4(4):e5103. doi: 10.1371/journal.pone.0005103. Epub 2009 Apr 1.

Abstract

BACKGROUND

More than 80% of mammalian protein-coding genes are driven by TATA-less promoters which often show multiple transcriptional start sites (TSSs). However, little is known about the core promoter DNA sequences or mechanisms of transcriptional initiation for this class of promoters.

METHODOLOGY/PRINCIPAL FINDINGS: Here we identify a new core promoter element XCPE2 (X core promoter element 2) (consensus sequence: A/C/G-C-C/T-C-G/A-T-T-G/A-C-C/A(+1)-C/T) that can direct specific transcription from the second TSS of hepatitis B virus X gene mRNA. XCPE2 sequences can also be found in human promoter regions and typically appear to drive one of the start sites within multiple TSS-containing TATA-less promoters. To gain insight into mechanisms of transcriptional initiation from this class of promoters, we examined requirements of several general transcription factors by in vitro transcription experiments using immunodepleted nuclear extracts and purified factors. Our results show that XCPE2-driven transcription uses at least TFIIB, either TFIID or free TBP, RNA polymerase II (RNA pol II) and the MED26-containing mediator complex but not Gcn5. Therefore, XCPE2-driven transcription can be carried out by a mechanism which differs from previously described TAF-dependent mechanisms for initiator (Inr)- or downstream promoter element (DPE)-containing promoters, the TBP- and SAGA (Spt-Ada-Gcn5-acetyltransferase)-dependent mechanism for yeast TATA-containing promoters, or the TFTC (TBP-free-TAF-containing complex)-dependent mechanism for certain Inr-containing TATA-less promoters. EMSA assays using XCPE2 promoter and purified factors further suggest that XCPE2 promoter recognition requires a set of factors different from those for TATA box, Inr, or DPE promoter recognition.

CONCLUSIONS/SIGNIFICANCE: We identified a new core promoter element XCPE2 that are found in multiple TSS-containing TATA-less promoters. Mechanisms of promoter recognition and transcriptional initiation for XCPE2-driven promoters appear different from previously shown mechanisms for classical promoters that show single "focused" TSSs. Our studies provide insight into novel mechanisms of RNA Pol II transcription from multiple TSS-containing TATA-less promoters.

摘要

背景

超过80%的哺乳动物蛋白质编码基因由无TATA框启动子驱动,这些启动子通常具有多个转录起始位点(TSS)。然而,对于这类启动子的核心启动子DNA序列或转录起始机制知之甚少。

方法/主要发现:在此,我们鉴定出一种新的核心启动子元件XCPE2(X核心启动子元件2)(共有序列:A/C/G-C-C/T-C-G/A-T-T-G/A-C-C/A(+1)-C/T),它可指导从乙型肝炎病毒X基因mRNA的第二个TSS进行特异性转录。XCPE2序列也可在人类启动子区域中发现,并且通常似乎驱动含多个TSS的无TATA框启动子内的一个起始位点。为深入了解这类启动子的转录起始机制,我们使用免疫耗尽的核提取物和纯化因子通过体外转录实验研究了几种通用转录因子的需求。我们的结果表明XCPE2驱动的转录至少使用TFIIB、TFIID或游离TBP、RNA聚合酶II(RNA pol II)以及含MED26的中介体复合物,但不使用Gcn5。因此,XCPE2驱动的转录可通过一种不同于先前描述的含起始子(Inr)或下游启动子元件(DPE)的启动子的TAF依赖性机制、酵母含TATA框启动子的TBP和SAGA(Spt-Ada-Gcn5-乙酰转移酶)依赖性机制或某些含Inr的无TATA框启动子的TFTC(不含TBP的含TAF复合物)依赖性机制的机制来进行。使用XCPE2启动子和纯化因子的电泳迁移率变动分析(EMSA)进一步表明,XCPE2启动子识别需要一组不同于TATA框、Inr或DPE启动子识别所需的因子。

结论/意义:我们鉴定出一种新的核心启动子元件XCPE2,其存在于含多个TSS的无TATA框启动子中。XCPE2驱动的启动子的启动子识别和转录起始机制似乎不同于先前显示的具有单个“聚焦”TSS的经典启动子的机制。我们的研究为从含多个TSS的无TATA框启动子进行RNA聚合酶II转录的新机制提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cca/2659449/cb61a2e4e45d/pone.0005103.g001.jpg

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