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Mapping protein-protein interactions by affinity-directed mass spectrometry.

机译:通过亲和导向质谱分析蛋白质-蛋白质相互作用。

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摘要

A precise and rapid method for identifying sites of interaction between proteins was demonstrated; the basis of the method is direct mass spectrometric readout from the complex to determine the specific components of the proteins that interact--a method termed affinity-directed mass spectrometry. The strategy was used to define the region of interaction of a protein growth factor with a monoclonal antibody. A combination of proteolytic digestion and affinity-directed mass spectrometry was used to rapidly determine the approximate location of a continuous binding epitope within the growth factor. The precise boundaries of the binding epitope were determined by affinity-directed mass spectrometric analysis of sets of synthetic peptide ladders that span the approximate binding region. In addition to the mapping of such linear epitopes, affinity-directed mass spectrometry can be applied to the mapping of other types of molecule-molecule contacts, including ligand-receptor and protein-oligonucleotide interactions.
机译:演示了一种精确快速的方法来鉴定蛋白质之间的相互作用位点。该方法的基础是从复合物中直接进行质谱读取,以确定相互作用的蛋白质的特定成分,该方法称为亲和定向质谱。该策略用于定义蛋白质生长因子与单克隆抗体相互作用的区域。蛋白水解消化和亲和导向质谱法的组合用于快速确定生长因子内连续结合表位的大概位置。结合表位的精确边界是通过亲和定向质谱分析法确定的,合成的肽阶梯跨越了大致的结合区域。除了这种线性表位的作图之外,亲和定向质谱法还可用于其他类型的分子-分子接触的作图,包括配体-受体和蛋白质-寡核苷酸相互作用。

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