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Surface Accessibility and Dynamics of Macromolecular Assemblies Probed by Covalent Labeling Mass Spectrometry and Integrative Modeling

机译:共价标记质谱和集成建模探测大分子组件的表面可及性和动力学

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摘要

Mass spectrometry (MS) has become an indispensable tool for investigating the architectures and dynamics of macromolecular assemblies. Here we show that covalent labeling of solvent accessible residues followed by their MS-based identification yields modeling restraints that allow mapping the location and orientation of subunits within protein assemblies. Together with complementary restraints derived from cross-linking and native MS, we built native-like models of four heterocomplexes with known subunit structures and compared them with available X-ray crystal structures. The results demonstrated that covalent labeling followed by MS markedly increased the predictive power of the integrative modeling strategy enabling more accurate protein assembly models. We applied this strategy to the F-type ATP synthase from spinach chloroplasts (cATPase) providing a structural basis for its function as a nanomotor. By subjecting the models generated by our restraint-based strategy to molecular dynamics (MD) simulations, we revealed the conformational states of the peripheral stalk and assigned flexible regions in the enzyme. Our strategy can readily incorporate complementary chemical labeling strategies and we anticipate that it will be applicable to many other systems providing new insights into the structure and function of protein complexes.
机译:质谱(MS)已成为研究大分子装配体的结构和动力学的必不可少的工具。在这里,我们表明溶剂可及残基的共价标记及其基于MS的鉴定产生了建模约束,该约束允许绘制蛋白质装配体内亚基的位置和方向。结合源自交联和天然MS的互补限制条件,我们建立了四个具有已知亚基结构的杂合物的天然模型,并将它们与可用的X射线晶体结构进行了比较。结果表明,共价标记后加MS显着提高了集成建模策略的预测能力,从而可以实现更准确的蛋白质装配模型。我们将这种策略应用于菠菜叶绿体的F型ATP合酶(cATPase),为其作为纳米马达的功能提供了结构基础。通过对我们基于约束的策略生成的模型进行分子动力学(MD)模拟,我们揭示了酶的外围茎的构象状态和指定的柔性区域。我们的策略可以很容易地纳入互补的化学标记策略,并且我们希望它将适用于许多其他系统,从而为蛋白质复合物的结构和功能提供新的见识。

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