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A thermodynamic analysis of the sequence-specific binding of RNA by bacteriophage MS2 coat protein

机译:噬菌体MS2外壳蛋白对RNA序列特异性结合的热力学分析

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摘要

Most mutations in the sequence of the RNA hairpin that specifically binds MS2 coat protein either reduce the binding affinity or have no effect. However, one RNA mutation, a uracil to cytosine change in the loop, has the unusual property of increasing the binding affinity to the protein by nearly 100-fold. Guided by the structure of the protein–RNA complex, we used a series of protein mutations and RNA modifications to evaluate the thermodynamic basis for the improved affinity: The tight binding of the cytosine mutation is due to (i) the amino group of the cytosine residue making an intra-RNA hydrogen bond that increases the propensity of the free RNA to adopt the structure seen in the complex and (ii) the increased affinity of hydrogen bonds between the protein and a phosphate two bases away from the cytosine residue. The data are in good agreement with a recent comparison of the cocrystal structures of the two complexes, where small differences in the two structures are seen at the thermodynamically important sites.
机译:特异性结合MS2外壳蛋白的RNA发夹序列中的大多数突变均会降低结合亲和力或无效。然而,一种RNA突变是尿嘧啶向胞嘧啶变化的环,具有异常的特性,可将与蛋白质的结合亲和力提高近100倍。在蛋白质-RNA复合物的结构指导下,我们使用了一系列蛋白质突变和RNA修饰来评估改善亲和力的热力学基础:胞嘧啶突变的紧密结合是由于(i)胞嘧啶的氨基残基形成RNA内氢键,从而增加了游离RNA采取复合物中所见结构的倾向,并且(ii)蛋白质和磷酸酯之间两个远离胞嘧啶残基的氢键亲和力增加。数据与两种络合物的共晶结构的最新比较非常吻合,在热力学重要的位置可以看到两种结构的细微差异。

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