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High-resolution NMR spectroscopy of encapsulated proteins dissolved in low-viscosity fluids

机译:溶解在低粘度流体中的包封蛋白的高分辨率NMR光谱

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摘要

High-resolution multi-dimensional solution NMR is unique as a biophysical and biochemical tool in its ability to examine both the structure and dynamics of macromolecules at atomic resolution. Conventional solution NMR approaches, however, are largely limited to examinations of relatively small (< 25 kDa) molecules, mostly due to the spectroscopic consequences of slow rotational diffusion. Encapsulation of macromolecules within the protective nanoscale aqueous interior of reverse micelles dissolved in low viscosity fluids has been developed as a means through which the ‘slow tumbling problem’ can be overcome. This approach has been successfully applied to diverse proteins and nucleic acids ranging up to 100 kDa, considerably widening the range of biological macromolecules to which conventional solution NMR methodologies may be applied. Recent advances in methodology have significantly broadened the utility of this approach in structural biology and molecular biophysics.
机译:高分辨率多维溶液NMR具有独特的生物物理和生化工具,能够以原子分辨率检查大分子的结构和动力学。然而,常规的溶液NMR方法主要限于对相对较小(<25 kDa)分子的检查,这主要是由于缓慢旋转扩散的光谱学结果。大分子在溶解于低粘度流体中的反胶束的保护性纳米级水性内部中的封装已被开发出来,作为克服“慢速翻滚问题”的一种手段。该方法已成功应用于高达100 kDa的多种蛋白质和核酸,大大拓宽了可以应用常规溶液NMR方法的生物大分子的范围。方法学的最新进展显着扩大了该方法在结构生物学和分子生物物理学中的应用。

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