首页> 外文期刊>Annual review of biophysics >Protein structure determination by magic-angle spinning solid-state NMR, and insights into the formation, structure, and stability of amyloid fibrils.
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Protein structure determination by magic-angle spinning solid-state NMR, and insights into the formation, structure, and stability of amyloid fibrils.

机译:通过魔角旋转固态NMR确定蛋白质结构,并深入了解淀粉样蛋白原纤维的形成,结构和稳定性。

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摘要

Protein structure determination methods using magic-angle spinning solid-state nuclear magnetic resonance (MAS SSNMR) have experienced a remarkable development in the past decade. Significant advances in instrumentation, sample preparation, spectroscopic techniques, and computational methods have made possible the determination of the first high-resolution structures of a peptide and a protein in 2002. Subsequent developments allowed the investigation of larger proteins, the initial application of automated analysis routines, and substantial improvements in structural resolution. The application of these methods has enabled the investigation of amyloid fibril structures, conformational dynamics, and their assembly pathways at an atomic level for the first time, as these are systems not accessible by other common techniques. Recent advances and future trends for protein structure determination using MAS SSNMR, as well as its application to the study of amyloid fibrils, are reviewed.
机译:在过去的十年中,使用魔角旋转固态核磁共振(MAS SSNMR)确定蛋白质结构的方法取得了显着发展。仪器,样品制备,光谱技术和计算方法方面的重大进步使得2002年确定肽和蛋白质的第一个高分辨率结构成为可能。随后的发展使人们可以研究更大的蛋白质,这是自动化分析的最初应用例行程序,并且在结构分辨率上有实质性的改进。这些方法的应用首次使人们能够在原子水平上研究淀粉样蛋白原纤维的结构,构象动力学及其组装途径,因为这些是其他通用技术无法访问的系统。综述了使用MAS SSNMR测定蛋白质结构的最新进展和未来趋势,以及其在淀粉样蛋白原纤维研究中的应用。

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