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Fast Mapping of Global Protein Folding States by Multivariate NMR: A GPS for Proteins

机译:通过多元NMR快速映射全球蛋白质折叠状态:蛋白质的GPS

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摘要

To obtain insight into the functions of proteins and their specific roles, it is important to establish efficient procedures for exploring the states that encapsulate their conformational space. Global Protein folding State mapping by multivariate NMR (GPS NMR) is a powerful high-throughput method that provides such an overview. GPS NMR exploits the unique ability of NMR to simultaneously record signals from individual hydrogen atoms in complex macromolecular systems and of multivariate analysis to describe spectral variations from these by a few variables for establishment of, and positioning in, protein-folding state maps. The method is fast, sensitive, and robust, and it works without isotope-labelling. The unique capabilities of GPS NMR to identify different folding states and to compare different unfolding processes are demonstrated by mapping of the equilibrium folding space of bovine α-lactalbumin in the presence of the anionic surfactant sodium dodecyl sulfate, SDS, and compare these with other surfactants, acid, denaturants and heat.
机译:为了深入了解蛋白质的功能及其特定作用,重要的是建立有效的程序来探索封装其构象空间的状态。通过多变量NMR(GPS NMR)进行的全局蛋白质折叠状态作图是一种功能强大的高通量方法,提供了这种概述。 GPS NMR利用NMR的独特能力来同时记录复杂大分子系统中单个氢原子的信号,并利用多元分析通过一些变量来描述这些光谱的光谱变化,以建立和定位蛋白质折叠状态图。该方法快速,灵敏且耐用,无需同位素标记即可使用。在存在阴离子表面活性剂十二烷基硫酸钠SDS的情况下,通过绘制牛α-乳清蛋白的平衡折叠空间,并将其与其他表面活性剂进行比较,证明了GPS NMR识别不同折叠状态并比较不同展开过程的独特能力。 ,酸,变性剂和热量。

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