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High-resolution profiling of homing endonuclease binding and catalytic specificity using yeast surface display.

机译:使用酵母表面展示的归巢核酸内切酶结合和催化特异性的高分辨率分析。

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摘要

Experimental analysis and manipulation of protein-DNA interactions pose unique biophysical challenges arising from the structural and chemical homogeneity of DNA polymers. We report the use of yeast surface display for analytical and selection-based applications for the interaction between a LAGLIDADG homing endonuclease and its DNA target. Quantitative flow cytometry using oligonucleotide substrates facilitated a complete profiling of specificity, both for DNA-binding and catalysis, with single base pair resolution. These analyses revealed a comprehensive segregation of binding specificity and affinity to one half of the pseudo-dimeric interaction, while the entire interface contributed specificity at the level of catalysis. A single round of targeted mutagenesis with tandem affinity and catalytic selection steps provided mechanistic insights to the origins of binding and catalytic specificity. These methods represent a dynamic new approach for interrogating specificity in protein-DNA interactions.
机译:蛋白质-DNA相互作用的实验分析和操作提出了独特的生物物理挑战,这是DNA聚合物的结构和化学同质性引起的。我们报告使用酵母表面展示的分析和基于选择的应用程序之间LAGLIDADG归巢核酸内切酶与其DNA靶标之间的相互作用。使用寡核苷酸底物的定量流式细胞术有助于对DNA结合和催化的特异性进行完整分析,并具有单碱基对分辨率。这些分析揭示了结合特异性和亲和力与假二聚体相互作用的一半之间的全面分离,而整个界面在催化水平上均具有特异性。具有串联亲和力和催化选择步骤的单轮定向诱变为结合和催化特异性的起源提供了机械学见识。这些方法代表了一种动态的新方法,用于询问蛋白质-DNA相互作用中的特异性。

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