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首页> 外文期刊>Journal of Biomolecular NMR >NMRKIN: Simulating line shapes from two-dimensional spectra of proteins upon ligand binding
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NMRKIN: Simulating line shapes from two-dimensional spectra of proteins upon ligand binding

机译:NMRKIN:结合配体后从蛋白质的二维光谱模拟线形

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摘要

The analysis of the shape of signals in NMR spectra is a powerful tool to study exchange and reaction kinetics. Line shapes in two-dimensional spectra of proteins recorded for titrations with ligands provide information about binding rates observed at individual residues. Here we describe a fast method to simulate a series of line shapes derived from two-dimensional spectra of a protein during a ligand titration. This procedure, which takes the mutual effects of two dimensions into account, has been implemented in MATLAB as an add-on to NMRLab (Gunther et al., 2000). In addition, more complex kinetic models, including sequential and parallel reactions, were simulated to demonstrate common features of more complex line shapes which could be encountered in protein-ligand interactions. As an example of this method, we describe its application to line shapes obtained for a titration of the p85 N-SH2 domain of PI3-kinase with a peptide derived from polyomavirus middle T antigen (MT). [References: 29]
机译:NMR光谱中信号形状的分析是研究交换和反应动力学的有力工具。记录的用配体滴定的蛋白质二维光谱中的线形提供了有关在各个残基处观察到的结合速率的信息。在这里,我们描述了一种快速的方法,可以模拟在配体滴定过程中从蛋白质的二维光谱得出的一系列线形。该程序考虑了二维的相互影响,已在MATLAB中作为NMRLab的附加组件实现(Gunther等,2000)。另外,模拟了更复杂的动力学模型,包括顺序反应和平行反应,以证明在蛋白质-配体相互作用中可能遇到的更复杂的线形的共同特征。作为此方法的一个例子,我们描述了其对用衍生自多瘤病毒中T抗原(MT)的肽滴定PI3-激酶的p85 N-SH2结构域而获得的线形的应用。 [参考:29]

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