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High-Resolution Diffusion Measurements of Proteins by NMR under Near-Physiological Conditions

机译:NMR在近乎生理条件下的高分辨率扩散测量蛋白质

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Measuring the translational diffusion of proteins under physiological conditions can be very informative, especially when multiple diffusing species can be distinguished. Diffusion NMR or diffusion-ordered spectroscopy (DOSY) is widely used to study molecular diffusion, where protons are used as probes, which can be further edited by the proton-attached heteronuclei to provide additional resolution. For example, the combination of the backbone amide protons (H-1(N)) to measure diffusion with the well-resolved H-1/N-15 correlations has afforded high-resolution DOSY experiments. However, significant amide-water proton exchange at physiological temperature and pH can affect the accuracy of diffusion data or cause complete loss of DOSY signals. Although aliphatic protons do not exchange with water protons, and thus are potential probes to measure diffusion rates, H-1/C-13 correlations are often in spectral overlap or masked by the water signal, which hampers the use of these correlations. In this report, a method was developed that separates the nuclei used for diffusion (alpha protons, H-1(alpha)) and those used for detection (H-1/N-15 and C-13(')/N-15 correlations). This approach enables high-resolution diffusion measurements of polypeptides in a mixture of biomolecules, thereby providing a powerful tool to investigate coexisting species under physiologically relevant conditions.
机译:测量生理条件下蛋白质的平移扩散可以是非常有信息的,特别是当可以区分多个扩散物种时。扩散NMR或扩散有序的光谱(剂量型)广泛用于研究分子扩散,其中质子用作探针,其可以通过质子附着的杂核来进一步编辑以提供额外的分辨率。例如,骨干酰胺质子(H-1(n))与分解的H-1 / N-15相关的扩散的组合具有高分辨率的剂量实验。然而,生理温度和pH下的重要酰胺 - 水质子交换可以影响扩散数据的准确性或引起多种多变信号的损失。虽然脂族质子不与水质子交换,但是测量扩散速率的潜在探针,H-1 / C-13相关性通常是光谱重叠或被水信号掩蔽,这妨碍了这些相关性的使用。在本报告中,开发了一种方法,该方法将用于扩散的核(α质子,H-1(α))和用于检测的那些(H-1 / N-15和C-13(')/ N-15分开相关)。该方法使得生物分子混合物中多肽的高分辨率扩散测量能够提供强大的工具,以在生理上相关条件下研究共存物种。

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