首页> 外文期刊>Proteins: Structure, Function, and Genetics >Determination of binding affinity upon mutation for type I dockerin-cohesin complexes from Clostridium thermocellum and Clostridium cellulolyticum using deep sequencing
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Determination of binding affinity upon mutation for type I dockerin-cohesin complexes from Clostridium thermocellum and Clostridium cellulolyticum using deep sequencing

机译:使用深度测序确定突变型热纤梭菌和解纤梭菌I型dockerin-粘着蛋白复合物的结合亲和力

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The comprehensive sequence determinants of binding affinity for type I cohesin toward dockerin from Clostridium thermocellum and Clostridium cellulolyticum was evaluated using deep mutational scanning coupled to yeast surface display. We measured the relative binding affinity to dockerin for 2970 and 2778 single point mutants of C. thermocellum and C. cellulolyticum, respectively, representing over 96% of all possible single point mutants. The interface G for each variant was reconstructed from sequencing counts and compared with the three independent experimental methods. This reconstruction results in a narrow dynamic range of -0.8-0.5 kcal/mol. The computational software packages FoldX and Rosetta were used to predict mutations that disrupt binding by more than 0.4 kcal/mol. The area under the curve of receiver operator curves was 0.82 for FoldX and 0.77 for Rosetta, showing reasonable agreements between predictions and experimental results. Destabilizing mutations to core and rim positions were predicted with higher accuracy than support positions. This benchmark dataset may be useful for developing new computational prediction tools for the prediction of the mutational effect on binding affinities for protein-protein interactions. Experimental considerations to improve precision and range of the reconstruction method are discussed. Proteins 2016; 84:1914-1928. (c) 2016 Wiley Periodicals, Inc.
机译:使用偶联至酵母表面展示的深度突变扫描评估了I型粘蛋白对来自热纤梭菌和解纤梭菌的dockerin的结合亲和力的综合序列决定子。我们分别测量了热纤梭菌和解纤梭菌的2970和2778单点突变体对dockerin的相对结合亲和力,占所有可能的单点突变体的96%以上。通过测序计数重建每个变体的界面G,并与三种独立的实验方法进行比较。这种重建导致-0.8-0.5 kcal / mol的狭窄动态范围。计算软件包FoldX和Rosetta用于预测突变,使结合发生破坏,突变超过0.4 kcal / mol。 FoldX的接收器操作员曲线的曲线下面积为0.82,Rosetta的接收器操作员曲线的曲线下面积为0.77,表明预测与实验结果之间存在合理的一致性。预测到核心和边缘位置的不稳定突变比支持位置的准确性更高。该基准数据集可用于开发新的计算预测工具,以预测对蛋白质-蛋白质相互作用的结合亲和力的突变效应。讨论了提高重构方法的精度和范围的实验考虑。蛋白质2016; 84:1914-1928。 (c)2016年威利期刊有限公司

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