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两种不同的RNA聚合酶II起始复合物可在大鼠脑肌酸激酶启动子上组装。

Two different RNA polymerase II initiation complexes can assemble on the rat brain creatine kinase promoter.

作者信息

Mitchell M T, Benfield P A

机构信息

Central Research Department, E. I. du Pont de Nemours & Co., Inc., Wilmington, Delaware 19880-0328.

出版信息

J Biol Chem. 1990 May 15;265(14):8259-67.

PMID:2159474
Abstract

The rat brain creatine kinase (CKB) gene has a structurally complex promoter. Although it contains a consensus RNA polymerase II TATA box, this is located at -60 relative to the main transcription start site, an unprecedented distance for mammalian TATA boxes. Steady-state messenger RNA for CKB is extremely abundant in brain, yet barely detectable in liver. Using a nuclear run-on analysis, we show that this difference is due, at least in part, to a difference in the rate at which CKB is transcribed in these tissues. We also demonstrate a tissue-specific hypersensitive site in the promoter region of the CKB gene. In vitro transcription experiments using nuclear extract isolated from liver, brain, and HeLa cells show a marked difference in the way these extracts recognize the CKB promoter. Two different preinitiation complexes can assemble on the CKB promoter, one which initiated at the same downstream start-site used in normal adult rat brain and one which initiated 35 base pairs further upstream. Extracts from brain form exclusively the downstream initiating complex. However, liver extracts favor formation of the upstream initiating complex, but formation of this complex can be blocked if brain or HeLa extract is added first. We demonstrate that the upstream consensus TATA box can function as a TATA box to mediate upstream initiation, but is not required for downstream initiation. We have shown previously that brain and HeLa cell nuclear extracts contain an abundant factor, TARP, which binds to the upstream consensus TATA box and have proposed that this factor is distinct from the classical TATA box binding factor TFIID. We propose that binding of TARP to the upstream consensus TATA box may block formation of the upstream initiating complex.

摘要

大鼠脑肌酸激酶(CKB)基因具有结构复杂的启动子。尽管它含有一个共有RNA聚合酶II TATA框,但该框相对于主要转录起始位点位于-60处,这对于哺乳动物TATA框来说是前所未有的距离。CKB的稳态信使RNA在脑中极其丰富,但在肝脏中几乎检测不到。通过核转录分析,我们表明这种差异至少部分是由于这些组织中CKB转录速率的差异。我们还在CKB基因的启动子区域证明了一个组织特异性超敏位点。使用从肝脏、脑和HeLa细胞中分离的核提取物进行的体外转录实验表明,这些提取物识别CKB启动子的方式存在显著差异。两种不同的起始前复合物可以在CKB启动子上组装,一种在正常成年大鼠脑中使用的相同下游起始位点起始,另一种在更上游35个碱基对处起始。脑提取物仅形成下游起始复合物。然而,肝脏提取物有利于上游起始复合物的形成,但如果先添加脑或HeLa提取物,则该复合物的形成可以被阻断。我们证明上游共有TATA框可以作为TATA框来介导上游起始,但下游起始不需要它。我们之前已经表明,脑和HeLa细胞核提取物含有一种丰富的因子TARP,它与上游共有TATA框结合,并提出该因子不同于经典的TATA框结合因子TFIID。我们提出TARP与上游共有TATA框的结合可能会阻断上游起始复合物的形成。

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