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Theory and practice of using solvent paramagnetic relaxation enhancement to characterize protein conformational dynamics

机译:使用溶剂顺磁性弛豫增强来表征蛋白质构象动力学的理论和实践

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摘要

Paramagnetic relaxation enhancement (PRE) has been established as a powerful tool in NMR for investigating protein structure and dynamics. The PRE is usually measured with a paramagnetic probe covalently attached at a specific site of an otherwise diamagnetic protein. The present work provides the numerical formulation for probing protein structure and conformational dynamics based on the solvent PRE (sPRE) measurement, using two alternative approaches. An inert paramagnetic cosolute randomly collides with the protein, and the resulting sPRE manifests the relative solvent exposure of protein nuclei. To make the back-calculated sPRE values most consistent with the observed values, the protein structure is either refined against the sPRE, or an ensemble of conformers is selected from a pre-generated library using a Monte Carlo algorithm. The ensemble structure comprises either N conformers of equal occupancy, or two conformers with different relative populations. We demonstrate the sPRE method using GB1, a structurally rigid protein, and calmodulin, a protein comprising two domains and existing in open and closed states. The sPRE can be computed with a stand-alone program for rapid evaluation, or with the invocation of a module in the latest release of the structure calculation software Xplor-NIH. As a label-free method, the sPRE measurement can be readily integrated with other biophysical techniques. The current limitations of the sPRE method are also discussed, regarding accurate measurement and theoretical calculation, model selection and suitable timescale.
机译:顺磁弛豫增强(PRE)已被确立为NMR研究蛋白质结构和动力学的有力工具。通常使用共价连接在反磁性蛋白质特定位点的顺磁性探针测量PRE。本工作提供了使用两种替代方法基于溶剂PRE(sPRE)测量来探测蛋白质结构和构象动力学的数值公式。惰性顺磁性溶质随机与蛋白质碰撞,所得sPRE表示蛋白质核的相对溶剂暴露。为了使反算的sPRE值与观察值最一致,可以针对sPRE精制蛋白质结构,或者使用Monte Carlo算法从预先生成的库中选择一组构象体。整体结构包含N个同等的构象异构体,或两个具有不同相对种群的构象异构体。我们展示了使用GB1(一种结构刚性蛋白)和钙调蛋白(一种包含两个域并以打开和关闭状态存在的蛋白)的sPRE方法。可以使用独立程序进行快速评估来计算sPRE,也可以使用最新版本的结构计算软件Xplor-NIH中的模块调用来计算sPRE。作为一种无标记方法,sPRE测量可轻松与其他生物物理技术集成。还讨论了sPRE方法的当前局限性,包括准确的测量和理论计算,模型选择和合适的时标。

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