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Structure-based engineering of environmentally sensitive fluorophores for monitoring protein-protein interactions

机译:基于结构的环境敏感荧光团工程技术,用于监测蛋白质-蛋白质相互作用

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摘要

Single, extrinsic, environmentally sensitive fluorophores can be used to quantitate formation of protein-protein complexes. These can be prepared semi-synthetically by covalent coupling to single cysteine mutations introduced at positions where the fluorophore is predicted to respond to formation of the complex without adversely affecting the interaction. The three-dimensional structure of a protein-protein interface can be used to select such locations by identifying residues that are located at the edge of a buried interfacial region, and are in partial steric contact with both partners as indicated by a change in their static solvent-accessible surface area upon complex formation. Using this design approach, cysteine mutations were introduced into the B1 domain of protein G, which successfully monitor complex formation with minimal interference. Such constructs have great utility in the analysis of solution properties of interface mutants. [References: 34]
机译:单个,外部,对环境敏感的荧光团可用于定量蛋白质-蛋白质复合物的形成。这些可以通过共价偶联至在预测荧光团对复合物的形成有响应而对相互作用没有不利影响的位置引入的单个半胱氨酸突变而半合成地制备。蛋白质-蛋白质界面的三维结构可用于通过识别残基来选择此类位置,这些残基位于被掩埋的界面区域的边缘,并且与两个伙伴都处于部分空间接触(如其静态变化所指示)复合物形成时溶剂可及的表面积。使用这种设计方法,将半胱氨酸突变引入到蛋白G的B1域中,该突变成功地以最小的干扰监测了复合物的形成。这样的构建体在分析界面突变体的溶液性质中具有很大的实用性。 [参考:34]

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