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在最终的TBP-TATA复合物形成过程中,存在着具有弯曲DNA的中间物种。

Intermediate species possessing bent DNA are present along the pathway to formation of a final TBP-TATA complex.

作者信息

Parkhurst K M, Richards R M, Brenowitz M, Parkhurst L J

机构信息

Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE, 68588-0304, USA.

出版信息

J Mol Biol. 1999 Jun 25;289(5):1327-41. doi: 10.1006/jmbi.1999.2835.

Abstract

Binding of the TATA-binding protein (TBP) to the "TATA" sequences present in the promoters of eukaryotic class II genes is the first step in the sequential assembly of transcription pre-initiation complexes. Myriad structural changes, including severe bending of the DNA, accompany TBP-TATA complex formation. A detailed kinetic study has been conducted to elucidate the mechanistic details of TBP binding and DNA bending. The binding of Saccharomyces cerevisiae TBP to the adenovirus major late promoter (AdMLP) was followed in real-time through a range of temperatures and TBP concentrations using fluorescence resonance energy transfer (FRET) and stopped-flow mixing. The results of association and relaxation kinetics and equilibrium binding experiments were analyzed globally to obtain the complete kinetic and energetic profile of the reaction. This analysis reveals a complex mechanism with two intermediate species, with the DNA in the intermediates apparently bent similarly to the DNA in the final complex. TBP binding and DNA bending occur simultaneously through the multiple steps of the reaction. The first and third steps in this sequential process show nearly identical large increases in both enthalpy and entropy, whereas the middle step is highly exothermic and proceeds with a large decrease in entropy. The first intermediate is significantly populated at equilibrium and resembles the final complex both structurally and energetically. It is postulated that both this intermediate and the final complex bind transcription factor IIB in the second step of pol II pre-initiation complex assembly. A consequence of such a reactive intermediate is that the rate of assembly of transcriptionally competent pre-initiation complexes from bi-directionally bound TBP is greatly increased.

摘要

TATA结合蛋白(TBP)与真核生物II类基因启动子中存在的“TATA”序列结合是转录前起始复合物顺序组装的第一步。TBP-TATA复合物形成伴随着无数的结构变化,包括DNA的严重弯曲。已经进行了详细的动力学研究以阐明TBP结合和DNA弯曲的机制细节。使用荧光共振能量转移(FRET)和停流混合,在一系列温度和TBP浓度下实时跟踪酿酒酵母TBP与腺病毒主要晚期启动子(AdMLP)的结合。对缔合和弛豫动力学以及平衡结合实验的结果进行全局分析,以获得反应的完整动力学和能量分布。该分析揭示了一种具有两个中间物种的复杂机制,中间物种中的DNA明显与最终复合物中的DNA弯曲方式相似。TBP结合和DNA弯曲在反应的多个步骤中同时发生。这个顺序过程中的第一步和第三步在焓和熵上都显示出几乎相同的大幅增加,而中间步骤是高度放热的,并且在熵大幅降低的情况下进行。第一个中间体在平衡时大量存在,在结构和能量上都类似于最终复合物。据推测,在RNA聚合酶II前起始复合物组装的第二步中,这个中间体和最终复合物都结合转录因子IIB。这种反应性中间体的一个结果是,从双向结合的TBP组装转录活性前起始复合物的速率大大提高。

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