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Intermolecular Interactions and Protein Dynamics by Solid‐State NMR Spectroscopy

机译:分子间相互作用和蛋白质动力学的固态NMR光谱

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摘要

Understanding the dynamics of interacting proteins is a crucial step toward describing many biophysical processes. Here we investigate the backbone dynamics for protein GB1 in two different assemblies: crystalline GB1 and the precipitated GB1–antibody complex with a molecular weight of more than 300 kDa. We perform these measurements on samples containing as little as eight nanomoles of GB1. From measurements of site‐specific 15N relaxation rates including relaxation dispersion we obtain snapshots of dynamics spanning nine orders of magnitude in terms of the time scale. A comparison of measurements for GB1 in either environment reveals that while many of the dynamic features of the protein are conserved between them (in particular for the fast picosecond–nanosecond motions), much greater differences occur for slow motions with motions in the >500 ns range being more prevalent in the complex. The data suggest that GB1 can potentially undergo a small‐amplitude overall anisotropic motion sampling the interaction interface in the complex.
机译:了解相互作用蛋白的动力学是描述许多生物物理过程的关键步骤。在这里,我们研究了蛋白质GB1在两个不同装配中的主链动力学:结晶GB1和分子量大于300 kDa的沉淀的GB1-抗体复合物。我们对仅含8纳摩尔GB1的样品进行这些测量。通过测量特定地点的 15 N松弛速率(包括弛豫分散),我们可以得到在时标上跨越九个数量级的动力学快照。两种环境中GB1的测量结果比较表明,尽管它们之间保留了许多蛋白质动态特性(特别是皮秒至纳秒的快速运动),但运动> 500 ns的慢速运动差异更大。范围在复合体中更为普遍。数据表明,GB1可能会对复合体中的交互界面进行小幅度的整体各向异性运动采样。

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