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Probing protein-protein interaction forces using single-molecule force spectroscopy

机译:使用单分子力谱探测蛋白质-蛋白质相互作用力

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The invention of atomic force microscopy (AFM) provides new technology for measuring the molecular specific binding forces. With the use of AFM single-molecule force spectroscopy (SMFS), the CD20-rituximab binding forces were measured on purified CD20 proteins (CD20 segment protein and CD20 full-length protein) and on Burkitt's lymphoma Raji cells, respectively. With AFM probe functionalization technology, rituximabs were linked onto AFM tips. With substrate functionalization technology, purified CD20 segment proteins and CD20 full-length proteins were attached onto mica. Lymphoma Raji cells were immobilized onto glass substrate with electrostatic adsorption and chemical fixation. The differences of measuring the binding forces on purified proteins and on cells were analyzed. The experimental results indicate that the binding force between CD20 segment protein and rituximab were markedly larger than that of CD20 full-length protein and CD20 protein on lymphoma cells, providing an effective method for investigating the rituximab's mechanism.
机译:原子力显微镜(AFM)的发明提供了测量分子特异性结合力的新技术。使用AFM单分子力谱(SMFS),分别在纯化的CD20蛋白(CD20段蛋白和CD20全长蛋白)和伯基特氏淋巴瘤Raji细胞上测量CD20-利妥昔单抗结合力。借助AFM探针功能化技术,将利妥昔单抗链接到AFM探针上。利用底物功能化技术,将纯化的CD20片段蛋白和CD20全长蛋白连接到云母上。通过静电吸附和化学固定将淋巴瘤Raji细胞固定在玻璃基底上。分析了对纯化蛋白和细胞的结合力的测量差异。实验结果表明,CD20片段蛋白与利妥昔单抗之间的结合力明显大于CD20全长蛋白和CD20蛋白对淋巴瘤细胞的结合力,为研究利妥昔单抗的机理提供了有效的方法。

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