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细胞特异性转录激活因子对基因的不同调控模式。

Distinct modes of gene regulation by a cell-specific transcriptional activator.

作者信息

Sengupta Tanushri, Cohet Nathalie, Morlé François, Bieker James J

机构信息

Department of Developmental and Regenerative Biology, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

Proc Natl Acad Sci U S A. 2009 Mar 17;106(11):4213-8. doi: 10.1073/pnas.0808347106. Epub 2009 Feb 27.

Abstract

The architectural layout of a eukaryotic RNA polymerase II core promoter plays a role in general transcriptional activation. However, its role in tissue-specific expression is not known. For example, differing modes of its recognition by general transcription machinery can provide an additional layer of control within which a single tissue-restricted transcription factor may operate. Erythroid Kruppel-like factor (EKLF) is a hematopoietic-specific transcription factor that is critical for the activation of subset of erythroid genes. We find that EKLF interacts with TATA binding protein-associated factor 9 (TAF9), which leads to important consequences for expression of adult beta-globin. First, TAF9 functionally supports EKLF activity by enhancing its ability to activate the beta-globin gene. Second, TAF9 interacts with a conserved beta-globin downstream promoter element, and ablation of this interaction by beta-thalassemia-causing mutations decreases its promoter activity and disables superactivation. Third, depletion of EKLF prevents recruitment of TAF9 to the beta-globin promoter, whereas depletion of TAF9 drastically impairs beta-promoter activity. However, a TAF9-independent mode of EKLF transcriptional activation is exhibited by the alpha-hemoglobin-stabilizing protein (AHSP) gene, which does not contain a discernable downstream promoter element. In this case, TAF9 does not enhance EKLF activity and depletion of TAF9 has no effect on AHSP promoter activation. These studies demonstrate that EKLF directs different modes of tissue-specific transcriptional activation depending on the architecture of its target core promoter.

摘要

真核生物RNA聚合酶II核心启动子的结构布局在一般转录激活中发挥作用。然而,其在组织特异性表达中的作用尚不清楚。例如,一般转录机制对其识别方式的差异可提供额外的控制层面,单个组织限制性转录因子可能在此层面发挥作用。红系 Kruppel样因子(EKLF)是一种造血特异性转录因子,对激活红系基因的一个子集至关重要。我们发现EKLF与TATA结合蛋白相关因子9(TAF9)相互作用,这对成人β-珠蛋白的表达产生重要影响。首先,TAF9通过增强EKLF激活β-珠蛋白基因的能力在功能上支持EKLF的活性。其次,TAF9与保守的β-珠蛋白下游启动子元件相互作用,由β地中海贫血致病突变导致的这种相互作用缺失会降低其启动子活性并使超激活失效。第三,EKLF的缺失会阻止TAF9募集到β-珠蛋白启动子,而TAF9的缺失则会严重损害β启动子活性。然而,α-血红蛋白稳定蛋白(AHSP)基因表现出一种不依赖TAF9的EKLF转录激活模式,该基因不包含可识别的下游启动子元件。在这种情况下,TAF9不会增强EKLF的活性,TAF9的缺失对AHSP启动子激活没有影响。这些研究表明,EKLF根据其靶核心启动子的结构指导不同模式的组织特异性转录激活。

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Distinct modes of gene regulation by a cell-specific transcriptional activator.细胞特异性转录激活因子对基因的不同调控模式。
Proc Natl Acad Sci U S A. 2009 Mar 17;106(11):4213-8. doi: 10.1073/pnas.0808347106. Epub 2009 Feb 27.

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