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TATA element recognition by the TATA box-binding protein has been conserved throughout evolution

机译:在整个进化过程中TATA盒结合蛋白对TATA元件的识别一直保持不变

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摘要

Cocrystal structures of wild-type TATA box-binding protein (TBP) recognizing 10 naturally occurring TATA elements have been determined at 2.3–1.8 Å resolution, and compared with our 1.9 Å resolution structure of TBP bound to the Adenovirus major late promoter (AdMLP) TATA box (5′-TATAAAAG-3′). Minor-groove recognition by the saddle-shaped protein induces the same conformational change in each of these oligonucleotides, despite variations in promoter sequence that reduce the efficiency of transcription initiation. Three molecular mechanisms explain assembly of diverse TBP–TATA element complexes. (1) T → A and A → T transversions leave the minor-groove face unchanged, permitting formation of TBP–DNA complexes on many A/T-rich core promoter sequences. (2) Cavities in the interface between TBP and the minor-groove face of the AdMLP TATA box accommodate the exocyclic NH2 groups of G in a TACA box and in a TATAAG box. (3) Formation of a C:G Hoogsteen basepair in a TATAAAC box eliminates steric clashes that would be produced by the Watson–Crick base pair. We conclude that the structure of the TBP–TATA box complex found at the heart of the polymerase II (pol II) transcription machinery has remained constant over the course of evolution, despite variations in TBP and its DNA targets.
机译:已经确定了识别10种天然TATA元件的野生型TATA盒结合蛋白(TBP)的共晶体结构,分辨率为2.3–1.8 ,,并与我们与腺病毒主要晚期启动子(AdMLP)结合的1.9Å分辨率的TBP结构进行了比较。 TATA盒(5'-TATAAAAG-3')。尽管启动子序列的变化降低了转录起始的效率,但鞍形蛋白对小沟的识别在这些寡核苷酸的每一个中诱导相同的构象变化。三种分子机制解释了各种TBP-TATA元素复合物的组装。 (1)T→A和A→T的颠换使次要槽面保持不变,从而允许在许多富含A / T的核心启动子序列上形成TBP-DNA复合物。 (2)TBP和AdMLP TATA盒的小槽面之间的界面中的空腔容纳TACA盒和TATAAG盒中G的环外NH2基团。 (3)在TATAAAC盒中形成C:G Hoogsteen碱基对可消除由Watson-Crick碱基对产生的空间冲突。我们得出的结论是,尽管TBP及其DNA靶点发生了变化,但在聚合酶II(pol II)转录机制中心发现的TBP–TATA盒复合物的结构在整个进化过程中一直保持不变。

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