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Inaugural Article: Origins of DNA-binding specificity: Role of protein contacts with the DNA backbone

机译:就职文章:DNA结合特异性的起源:蛋白质与DNA骨架接触的作用

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摘要

A central question in protein–DNA recognition is the origin of the specificity that permits binding to the correct site in the presence of excess, nonspecific DNA. In the P22 Arc repressor, the Phe-10 side chain is part of the hydrophobic core of the free protein but rotates out to pack against the sugar-phosphate backbone of the DNA in the repressor-operator complex. Characterization of a library of position 10 variants reveals that Phe is the only residue that results in fully active Arc. One class of mutants folds stably but binds operator with reduced affinity; another class is unstable. FV10, one member of the first class, binds operator DNA and nonoperator DNA almost equally well. The affinity differences between FV10 and wild type indicate that each Phe-10 side chain contributes 1.5–2.0 kcal to operator binding but less than 0.5 kcal/mol to nonoperator binding, demonstrating that contacts between Phe-10 and the operator DNA backbone contribute to binding specificity. This appears to be a direct contribution as the crystal structure of the FV10 dimer is similar to wild type and the Phe-10-DNA backbone interactions are the only contacts perturbed in the cocrystal structure of the FV10-operator complex.
机译:蛋白质-DNA识别中的一个核心问题是特异性的起源,该特异性允许在存在过多的非特异性DNA的情况下结合至正确的位点。在P22 Arc阻遏物中,Phe-10侧链是游离蛋白疏水核心的一部分,但旋转出来以与阻遏物-操纵子复合体中DNA的糖磷酸主链相对应。位置10变体文库的表征显示,Phe是导致完全活性Arc的唯一残基。一类突变体稳定折叠,但结合操纵子却降低亲和力。另一类不稳定。第一类成员FV10几乎完全相同地结合了操作员DNA和非操作员DNA。 FV10与野生型之间的亲和力差异表明,每个Phe-10侧链对操纵基因的结合贡献为1.5–2.0 kcal,但对非操纵基因的结合贡献小于0.5 kcal / mol,这表明Phe-10与操纵基因DNA骨架之间的接触有助于结合特异性。这似乎是直接的贡献,因为FV10二聚体的晶体结构与野生型相似,而Phe-10-DNA主链相互作用是FV10-操纵基因复合体共晶体结构中唯一受到干扰的接触。

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