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Principles of protein-DNA recognition revealed in the structural analysis of Ndt80-MSE DNA complexes

机译:Ndt80-MSE DNA复合物的结构分析揭示了蛋白质-DNA识别的原理

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摘要

The Saccharomyces cerevisiae transcription factor Ndt8O selectively binds a DNA consensus sequence (the middle sporulation element [MSE]) to activate gene expression after the successful completion of meiotic recombination. Here we report the X-ray crystal structures of Ndt80 bound to ten distinct MSE variants. Comparison of these structures with the structure of Ndt80 bound to a consensus MSE reveals structural principles that determine the DNA binding specificity of this transcription factor. The 5' GC-rich end of the MSE contains distinct 5'-YpG-3' steps that are recognized by arginine side chains through a combination of hydrogen bonding and cation-pi interactions. The 3' AT-rich region is recognized via minor groove contacts that sterically exclude the N-2 atom of GC base pairs. The conformation of the AT-rich region is fixed by interactions with the protein that favor recognition of poly(A)-poly(T) versus mixed AT sequences through an avoidance of major groove steric clashes at 5'-ApT3' steps.
机译:成功完成减数分裂重组后,酿酒酵母转录因子Ndt8O选择性结合DNA共有序列(中间孢子形成元素[MSE])以激活基因表达。在这里,我们报告绑定到十个不同的MSE变体的Ndt80的X射线晶体结构。将这些结构与结合到共有MSE的Ndt80的结构进行比较,揭示了确定该转录因子的DNA结合特异性的结构原理。 MSE的富含5'GC的末端包含独特的5'-YpG-3'步骤,精氨酸侧链通过氢键和阳离子-pi相互作用的组合识别了这些步骤。富含3'AT的区域可通过次要的凹槽接触识别,该接触在空间上排除了GC碱基对的N-2原子。通过与蛋白质的相互作用固定了富含AT的区域的构象,从而避免了5'-ApT3'步骤的主要沟位空间冲突,从而有利于识别poly(A)-poly(T)与混合AT序列。

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