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NMR Mapping of Protein Conformational Landscapes using Coordinated Behavior of Chemical Shifts upon Ligand Binding

机译:使用配体结合的化学位移的协调行为蛋白质构象景观的NMR映射

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摘要

Proteins exist as an ensemble of conformers that are distributed on free energy landscapes resembling folding funnels. While the most stable conformers populate low energy basins, protein function is often carried out through low-populated conformational states that occupy high energy basins. Ligand binding shifts the populations of these states, changing the distribution of these conformers. Understanding how the equilibrium among the states is altered upon ligand binding, interaction with other binding partners, and/or mutations and post-translational modifications is of critical importance for explaining allosteric signaling in proteins. Here, we propose a statistical analysis of the chemical shifts (CONCISE, COordiNated ChemIcal Shifts bEhavior) for the interpretation of protein conformational equilibria following linear trajectories of NMR chemical shifts. CONCISE enables one to quantitatively measure the population shifts associated with ligand titrations and estimate the degree of collectiveness of the protein residues’ response to ligand binding, giving a concise view of the structural transitions. The combination of CONCISE with thermocalorimetric and kinetic data allows one to depict a protein’s approximate conformational energy landscape. We tested this method with the catalytic subunit of cAMP-dependent protein kinase A, a ubiquitous enzyme that undergoes conformational transitions upon both nucleotide and pseudo-substrate binding. When complemented with chemical shift covariance analysis (CHESCA), this new method offers both collective response and residue-specific correlations for ligand binding to proteins.
机译:蛋白质以构象体的整体形式存在,分布在类似于折叠漏斗的自由能态上。虽然最稳定的构象异构体遍布低能盆地,但蛋白质功能通常是通过占据高能盆地的低构象态来实现的。配体结合改变了这些状态的种群,改变了这些构象异构体的分布。理解配体结合,与其他结合伴侣的相互作用和/或突变和翻译后修饰如何改变状态之间的平衡对于解释蛋白质中的变构信号至关重要。在这里,我们提出了化学位移的统计分析(简明,协调的化学位移行为),用于解释遵循NMR化学位移的线性轨迹的蛋白质构象平衡。 CONCISE使人们能够定量地测量与配体滴定相关的群体迁移,并估计蛋白质残基对配体结合的反应的总体程度,从而提供结构转变的简明视图。 CONCISE结合了热量热和动力学数据,可以描绘出蛋白质的近似构象能态。我们用cAMP依赖性蛋白激酶A的催化亚基测试了该方法,cAMP依赖性蛋白激酶A是一种普遍存在的酶,在核苷酸和伪底物结合后都会发生构象转变。当与化学位移协方差分析(CHESCA)结合使用时,这种新方法既可提供集体响应,也可提供配体与蛋白质结合的残基特异性相关性。

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