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c-jun启动子结合转录因子的启动子捕获

Promoter trapping of c-jun promoter-binding transcription factors.

作者信息

Jiang Daifeng, Moxley Robert A, Jarrett Harry W

机构信息

Department of Chemistry, University of Texas at San Antonio, San Antonio, TX 78249, USA.

出版信息

J Chromatogr A. 2006 Nov 10;1133(1-2):83-94. doi: 10.1016/j.chroma.2006.08.001. Epub 2006 Aug 28.

Abstract

A new method called promoter trapping was developed to purify promoter-protein complex using the c-jun promoter (-200+81) as a model, which was shown to have significant promoter activity. Polymerase chain reaction (PCR), lambda exonuclease digestion combined with (AC)(5)-Sepharose DNA affinity chromatography were used to produce c-jun promoter with a (GT)(5) tail at each 3' end. The intact promoter and different length pieces with one or two (GT)(5) tails had almost the same capacity to bind with (AC)(5)-Sepharose. In solution, tailed c-jun promoter (60 nM) and competitor poly dI:dC (30 ng/microl) was incubated with crude HEK293 nuclear extract to form a large protein-promoter complex, and the complex was then trapped by (AC)(5)-Sepharose by centrifugation or on a column. Compared with a popular alternative method, called here the immobilized promoter method, the products of promoter trapping were purer. The preinitiation complex purified by promoter trapping had the expected components including RNA polymerase II, TATA-box binding protein (TBP), TFIIF subunit RAP74, and transcription factor SP1, and transcribed RNA in vitro. Thus, the promoter trapping approach provides a useful tool for the purification and investigation of transcription complexes.

摘要

一种名为启动子捕获的新方法被开发出来,以c-jun启动子(-200 + 81)为模型来纯化启动子-蛋白质复合物,该启动子已被证明具有显著的启动子活性。采用聚合酶链反应(PCR)、λ核酸外切酶消化并结合(AC)5 - 琼脂糖DNA亲和层析法,在c-jun启动子的每个3'末端产生带有(GT)5尾巴的产物。完整的启动子以及带有一或两个(GT)5尾巴的不同长度片段与(AC)5 - 琼脂糖的结合能力几乎相同。在溶液中,将带尾的c-jun启动子(60 nM)和竞争物聚dI:dC(30 ng/μl)与HEK293细胞核粗提物一起温育以形成大型蛋白质-启动子复合物,然后通过离心或柱上法用(AC)5 - 琼脂糖捕获该复合物。与一种在此称为固定化启动子法的常用替代方法相比,启动子捕获的产物更纯。通过启动子捕获纯化的起始前复合物含有预期的成分,包括RNA聚合酶II、TATA框结合蛋白(TBP)、TFIIF亚基RAP74和转录因子SP1,并且能在体外转录RNA。因此,启动子捕获方法为转录复合物的纯化和研究提供了一个有用的工具。

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