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一种对DNA亲和力增强的TATA结合蛋白突变体在体内指导从反向TATA序列进行转录。

A TATA binding protein mutant with increased affinity for DNA directs transcription from a reversed TATA sequence in vivo.

作者信息

Spencer J Vaughn, Arndt Karen M

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Mol Cell Biol. 2002 Dec;22(24):8744-55. doi: 10.1128/MCB.22.24.8744-8755.2002.

Abstract

The TATA-binding protein (TBP) nucleates the assembly and determines the position of the preinitiation complex at RNA polymerase II-transcribed genes. We investigated the importance of two conserved residues on the DNA binding surface of Saccharomyces cerevisiae TBP to DNA binding and sequence discrimination. Because they define a significant break in the twofold symmetry of the TBP-TATA interface, Ala100 and Pro191 have been proposed to be key determinants of TBP binding orientation and transcription directionality. In contrast to previous predictions, we found that substitution of an alanine for Pro191 did not allow recognition of a reversed TATA box in vivo; however, the reciprocal change, Ala100 to proline, resulted in efficient utilization of this and other variant TATA sequences. In vitro assays demonstrated that TBP mutants with the A100P and P191A substitutions have increased and decreased affinity for DNA, respectively. The TATA binding defect of TBP with the P191A mutation could be intragenically suppressed by the A100P substitution. Our results suggest that Ala100 and Pro191 are important for DNA binding and sequence recognition by TBP, that the naturally occurring asymmetry of Ala100 and Pro191 is not essential for function, and that a single amino acid change in TBP can lead to elevated DNA binding affinity and recognition of a reversed TATA sequence.

摘要

TATA 结合蛋白(TBP)启动装配并决定转录起始前复合物在 RNA 聚合酶 II 转录基因上的位置。我们研究了酿酒酵母 TBP 的 DNA 结合表面上两个保守残基对 DNA 结合和序列识别的重要性。由于 Ala100 和 Pro191 在 TBP-TATA 界面的二重对称性中定义了一个显著的断点,因此有人提出它们是 TBP 结合方向和转录方向性的关键决定因素。与先前的预测相反,我们发现在体内将丙氨酸替换为 Pro191 不允许识别反向 TATA 框;然而,相反的变化,即 Ala100 替换为脯氨酸,导致该序列和其他变体 TATA 序列的有效利用。体外试验表明,具有 A100P 和 P191A 替换的 TBP 突变体分别对 DNA 的亲和力增加和降低。具有 P191A 突变的 TBP 的 TATA 结合缺陷可被 A100P 替换在基因内抑制。我们的结果表明,Ala100 和 Pro191 对 TBP 的 DNA 结合和序列识别很重要,Ala100 和 Pro191 的天然不对称性对功能不是必需的,并且 TBP 中的单个氨基酸变化可导致 DNA 结合亲和力升高和对反向 TATA 序列的识别。

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