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An Integrated Approach for Determining a Protein-Protein Binding Interface in Solution and an Evaluation of Hydrogen-Deuterium Exchange Kinetics for Adjudicating Candidate Docking Models

机译:用于测定溶液中蛋白质 - 蛋白结合界面的综合方法及氢氘交换动力学评估,用于判决候选候选的对接模型

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摘要

We describe an integrated approach of using hydrogen-deuterium exchange mass spectrometry (HDX-MS), chemical cross-linking mass spectrometry (XL-MS), and molecular docking to characterize the binding interface and to predict the three-dimensional quaternary structure of a protein-protein complex in solution. Interleukin 7 (IL-7) and its alpha-receptor, IL-7R alpha, serving as essential mediators in the immune system, are the model system. HDX kinetics reports widespread protection on IL-7R alpha but shows no differential evidence of binding-induced protection or remote conformational change. Cross-linking with reagents that differ in spacer lengths and targeting residues increases the spatial resolution. Using five cross-links as distance restraints for protein-protein docking, we generated a high-confidence model of the IL-7/IL-7R alpha complex. Both the predicted binding interface and regions with direct contacts agree well with those in the solid-state structure, as confirmed by previous X-ray crystallography. An additional binding region was revealed to be the C-terminus of helix B of IL-7, highlighting the value of solution-based characterization. To generalize the integrated approach, protein protein docking was executed with a different number of cross-links. Combining cluster analysis and HDX kinetics adjudication, we found that two intermolecular cross-link-derived restraints are sufficient to generate a high-confidence model with root-mean-square distance (rmsd) value of all alpha carbons below 2.0 angstrom relative to the crystal structure. The remarkable results of binding-interface determination and quaternary structure prediction highlight the effectiveness and capability of the integrated approach, which will allow more efficient and comprehensive analysis of interprotein interactions with broad applications in the multiple stages of design, implementation, and evaluation for protein therapeutics.
机译:我们描述了使用氢 - 氘交换质谱(HDX-MS),化学交联质谱(XL-MS)的综合方法,以及分子对接表征结合界面并预测A的三维季结构溶液中的蛋白质 - 蛋白质复合物。白细胞介素7(IL-7)及其α-受体,IL-7Rα,作为免疫系统中的必需介质,是模型系统。 HDX动力学报告了IL-7Rα的广泛保护,但没有显示结合引起的保护或远程构象变化的差异证据。与间隔长度和靶向残基不同的试剂交联增加了空间分辨率。使用五个交叉链接作为蛋白质 - 蛋白对接的距离限制,我们产生了IL-7 / IL-7Rα复合物的高置信模型。预测的绑定界面和具有直接触点的区域都与固态结构中的那些相一致,如先前的X射线晶体学证实。另外的粘合区域是IL-7螺旋B的C末端,突出了基于溶液的表征的值。为了概括综合方法,用不同数量的交叉链路执行蛋白质蛋白酶对接。结合集群分析和HDX动力学判决,我们发现两个分子间交叉链路导出的约束足以产生具有相对于晶体低于2.0埃碳的所有α碳的根均方距离(RMSD)值的高档位模型结构体。结合接口确定的显着结果和第四纪结构预测突出了综合方法的有效性和能力,这将允许对蛋白质治疗剂的多个阶段的广泛应用程序进行更有效和全面的分析,以对蛋白质治疗剂的多个阶段的广泛应用。

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  • 来源
    《Analytical chemistry》 |2019年第24期|共9页
  • 作者单位

    Washington Univ Dept Chem St Louis MO 63130 USA;

    Bristol Myers Squibb Mol Struct &

    Design Mol Discovery Technol Res &

    Dev Princeton NJ 08540 USA;

    Bristol Myers Squibb Co Pharmaceut Candidate Optimizat Res &

    Dev Princeton NJ 08540 USA;

    Washington Univ Dept Chem St Louis MO 63130 USA;

    Bristol Myers Squibb Co Pharmaceut Candidate Optimizat Res &

    Dev Princeton NJ 08540 USA;

    Bristol Myers Squibb Co Pharmaceut Candidate Optimizat Res &

    Dev Princeton NJ 08540 USA;

    Bristol Myers Squibb Co Pharmaceut Candidate Optimizat Res &

    Dev Princeton NJ 08540 USA;

    Washington Univ Dept Chem St Louis MO 63130 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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