Kaur Parminder, Kiselar Janna, Yang Sichun, Chance Mark R
From the ‡Center for Proteomics and Bioinformatics, Case Western Reserve University School of Medicine, 10009 Euclid Ave, Cleveland, Ohio, 44109.
From the ‡Center for Proteomics and Bioinformatics, Case Western Reserve University School of Medicine, 10009 Euclid Ave, Cleveland, Ohio, 44109
Mol Cell Proteomics. 2015 Apr;14(4):1159-68. doi: 10.1074/mcp.O114.044362. Epub 2015 Feb 16.
Hydroxyl radical footprinting based MS for protein structure assessment has the goal of understanding ligand induced conformational changes and macromolecular interactions, for example, protein tertiary and quaternary structure, but the structural resolution provided by typical peptide-level quantification is limiting. In this work, we present experimental strategies using tandem-MS fragmentation to increase the spatial resolution of the technique to the single residue level to provide a high precision tool for molecular biophysics research. Overall, in this study we demonstrated an eightfold increase in structural resolution compared with peptide level assessments. In addition, to provide a quantitative analysis of residue based solvent accessibility and protein topography as a basis for high-resolution structure prediction; we illustrate strategies of data transformation using the relative reactivity of side chains as a normalization strategy and predict side-chain surface area from the footprinting data. We tested the methods by examination of Ca(+2)-calmodulin showing highly significant correlations between surface area and side-chain contact predictions for individual side chains and the crystal structure. Tandem ion based hydroxyl radical footprinting-MS provides quantitative high-resolution protein topology information in solution that can fill existing gaps in structure determination for large proteins and macromolecular complexes.
基于羟基自由基足迹法的质谱技术用于蛋白质结构评估,目的是了解配体诱导的构象变化和大分子相互作用,例如蛋白质的三级和四级结构,但典型的肽段水平定量所提供的结构分辨率有限。在这项工作中,我们提出了利用串联质谱碎裂来将该技术的空间分辨率提高到单残基水平的实验策略,从而为分子生物物理学研究提供一种高精度工具。总体而言,在本研究中,我们证明与肽段水平评估相比,结构分辨率提高了八倍。此外,为了对基于残基的溶剂可及性和蛋白质拓扑结构进行定量分析,作为高分辨率结构预测的基础;我们阐述了使用侧链相对反应性作为归一化策略的数据转换策略,并根据足迹数据预测侧链表面积。我们通过检测Ca(+2)-钙调蛋白来测试这些方法,结果表明单个侧链的表面积与侧链接触预测值和晶体结构之间具有高度显著的相关性。基于串联离子的羟基自由基足迹质谱法可在溶液中提供定量的高分辨率蛋白质拓扑信息,这能够填补大型蛋白质和大分子复合物结构测定中现有的空白。