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首页> 外文期刊>Angewandte Chemie >Broadband Dynamics of Ubiquitin by Anionic and Cationic Nanoparticle Assisted NMR Spin Relaxation
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Broadband Dynamics of Ubiquitin by Anionic and Cationic Nanoparticle Assisted NMR Spin Relaxation

机译:阴离子和阳离子纳米粒子辅助泛素的宽带动力学辅助NMR旋转松弛

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摘要

The quantitative and comprehensive description of the internal dynamics of proteins is critical for understanding their function. Nanoparticle-assisted N-15 NMR spin relaxation spectroscopy is a new method for the observation of picosecond to microsecond dynamics of proteins when transiently interacting with the surface of the nanoparticles (NPs). The method is applied here to the protein ubiquitin in the presence of anionic and cationic silica NPs (SNPs) of different sizes. The backbone dynamics profiles are reproducible and strikingly similar to each other, indicating that specific protein-SNP interactions are unimportant. The dynamics profiles closely match the sub-nanosecond dynamics S-2 values observed by model-free analysis of standard N-15 relaxation of ubiquitin in free solution, indicating that the bulk of the ubiquitin backbone dynamics in solution is confined to sub-nanosecond timescales and, hence, it is dynamically more restrained than previous NMR studies have suggested.
机译:蛋白质内部动力学的定量和全面描述对于理解其功能至关重要。纳米颗粒辅助的N-15核磁共振自旋弛豫谱是一种观察蛋白质与纳米颗粒表面瞬时相互作用时皮秒到微秒动力学的新方法。该方法适用于在不同大小的阴离子和阳离子二氧化硅NP(SNP)存在下的蛋白质泛素。主干动力学图谱是可重复的,并且彼此惊人地相似,表明特定的蛋白质SNP相互作用并不重要。动力学曲线与自由溶液中泛素标准N-15弛豫的无模型分析观察到的亚纳秒动力学S-2值非常匹配,表明溶液中的大部分泛素骨架动力学仅限于亚纳秒时间尺度,因此,它在动力学上比以前的NMR研究所建议的更受限制。

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