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Fast Photochemical Oxidation of Proteins for Comparing Structures of Protein-Ligand Complexes: The Calmodulin-Peptide Model System

机译:蛋白质的快速光化学氧化以比较蛋白质-配体复合物的结构:钙调蛋白-肽模型系统

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Fast photochemical oxidation of proteins (FPOP) is a mass spectrometry-based protein footprinting method that modifies proteins on the microsecond time scale. Highly reactive ~(centre dot)OH, produced by laser photolysis of hydrogen peroxide, oxidatively modifies the side chains of approximately one-half the common amino acids on this time scale. Because of the short labeling exposure, only solvent-accessible residues are sampled. Quantification of the modification extent for the apo and holo states of a protein-ligand complex provides structurally sensitive information at the amino-acid level to compare the structures of unknown protein complexes with known ones. We report here the use of FPOP to monitor the structural changes of calmodulin in its established binding to M13 of the skeletal muscle myosin light chain kinase. We use the outcome to establish the unknown structures resulting from binding with melittin and mastoparan. The structural comparison follows a comprehensive examination of the extent of FPOP modifications as measured by proteolysis and LC-MS/MS for each protein-ligand equilibrium. The results not only show that the three calmodulin-peptide complexes have similar structures but also reveal those regions of the protein that became more or less solvent-accessible upon binding. This approach has the potential for relatively high throughput, information-dense characterization of a series of protein-ligand complexes in biochemistry and drug discovery when the structure of one reference complex is known, as is the case for calmodulin and M13 of the skeletal muscle myosin light chain kinase, and the structures of related complexes are not.
机译:蛋白质的快速光化学氧化(FPOP)是一种基于质谱的蛋白质足迹方法,可在微秒级上修改蛋白质。通过过氧化氢的激光光解产生的高反应性〜(中心点)OH,在此时间范围内,氧化修饰了大约一半的常见氨基酸的侧链。由于标签暴露时间短,因此仅取样溶剂可及的残留物。对蛋白质-配体复合物的载脂蛋白和全环状态的修饰程度进行定量分析,可在氨基酸水平上提供结构敏感信息,以将未知蛋白质复合物与已知蛋白质复合物的结构进行比较。我们在这里报告使用FPOP来监视钙调蛋白在已建立的与骨骼肌肌球蛋白轻链激酶M13的结合中的结构变化。我们使用结果来建立由蜂毒肽和马索帕兰结合产生的未知结构。结构比较是对蛋白质蛋白和配体平衡通过蛋白水解和LC-MS / MS测定的FPOP修饰程度进行的全面检查。结果不仅表明三种钙调蛋白-肽复合物具有相似的结构,而且还揭示了蛋白质的结合后或多或少可通过溶剂接近的那些区域。当已知一个参考复合物的结构时,这种方法具有相对较高的通量,在生物化学和药物发现中一系列蛋白质-配体复合物的信息密集表征的潜力,例如钙调蛋白和骨骼肌肌球蛋白的M13就是这种情况轻链激酶,而相关复合物的结构则不然。

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