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在简单的合成启动子中,YY1诱导的DNA弯曲在转录激活和抑制中起重要作用。

In simple synthetic promoters YY1-induced DNA bending is important in transcription activation and repression.

作者信息

Kim J, Shapiro D J

机构信息

Department of Biochemistry, University of Illinois, Urbana 61801, USA.

出版信息

Nucleic Acids Res. 1996 Nov 1;24(21):4341-8. doi: 10.1093/nar/24.21.4341.

Abstract

Depending on promoter context, YY1 can activate or repress transcription, or provide a site for transcription initiation. To investigate whether the ability of YY1 to induce DNA bending influenced its ability to activate and repress transcription, simple synthetic promoters were constructed in which the YY1 binding site was inserted between the TATA box and either the NF1 or AP1 recognition sequences. In transient transfections of COS cells, the NF1YY1TATA and NF1RYY1TATA promoters exhibited a dramatic 15-20-fold increase in correctly initiated transcription. These promoters exhibited even larger 60-80-fold increases in transcription in HeLa cells. Neither multiple copies of the YY1 binding site alone, nor placement of a YY1 site upstream of the NF1 site activated transcription. Deletion of 4 bp between the NF1 and YY1 sites, which changes the phase of the DNA bends, abolished the 16-fold activation of transcription by NF1YY1TATA. Insertion of the YY1 site between the AP1 site and the TATA box decreased transcription approximately 3-fold. Replacing the YY1 binding site with an intrinsic DNA bending sequence mimicked this transcription repression. Sequences of similar length which do not bend DNA fail to repress AP1-mediated transcription. Gel mobility shift assays were used to show that binding of YY1 to its recognition sequence did not repress binding of AP1 to its recognition sequences. Our data indicate that YY1-induced DNA bending may activate and repress transcription by changing the spatial relationships between transcription activators and components of the basal transcription apparatus.

摘要

根据启动子的上下文,YY1可以激活或抑制转录,或者提供一个转录起始位点。为了研究YY1诱导DNA弯曲的能力是否影响其激活和抑制转录的能力,构建了简单的合成启动子,其中YY1结合位点插入到TATA框与NF1或AP1识别序列之间。在COS细胞的瞬时转染中,NF1YY1TATA和NF1RYY1TATA启动子在正确起始的转录中表现出15 - 20倍的显著增加。这些启动子在HeLa细胞中的转录增加甚至更大,达到60 - 80倍。单独的多个YY1结合位点副本,或者在NF1位点上游放置YY1位点都不能激活转录。NF1和YY1位点之间4个碱基对的缺失改变了DNA弯曲的相位,消除了NF1YY1TATA对转录的16倍激活。在AP1位点和TATA框之间插入YY1位点使转录降低了约3倍。用一个内在的DNA弯曲序列取代YY1结合位点模拟了这种转录抑制。长度相似但不使DNA弯曲的序列不能抑制AP1介导的转录。凝胶迁移率变动分析表明YY1与其识别序列的结合不会抑制AP1与其识别序列的结合。我们的数据表明,YY1诱导的DNA弯曲可能通过改变转录激活因子与基础转录装置组件之间的空间关系来激活和抑制转录。

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