Fast NMR Data Acquisition - Beyond the Fourier Transform

Fast NMR Data Acquisition - Beyond the Fourier Transform
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快速 NMR 数据采集 - 超越傅里叶变换

DOI:
10.1039/9781782628361-00267
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发表时间:
2017
期刊:
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影响因子:
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通讯作者:
Bostock M
Bostock M
中科院分区:
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文献类型:
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作者:
Bostock M

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沿着X射线晶体学,NMR光谱学是唯一可用于研究分子结构的原子分辨率技术。多年来,许多发展显着增加了生物分子NMR研究可以应用的尺寸限制,特别是包括TROSY技术,1先进的标记策略,包括选择性甲基质子化2和甲基定向实验,3以及NMR硬件的持续改进。这些进展使NMR光谱探测越来越苛刻的应用,如蛋白质复合物4,5和更大的膜蛋白。6,7在大多数情况下,多维NMR实验已被证明是必不可少的,以实现主链和侧链的分配,以获得
Along with X-ray crystallography, NMR spectroscopy is the only atomic resolution technique available to study molecular structure. Over the years, many developments have significantly increased the size-limit to which biomolecular NMR studies can be applied, including in particular the TROSY technique, 1 advanced labelling strategies including selective methyl protonation2 and methyl-directed experiments, 3 as well as continuing improvements in NMR hardware. Such advances have enabled NMR spectroscopy to probe increasingly demanding applications, such as protein complexes4, 5 and larger membrane proteins. 6, 7 In the majority of cases, multidimensional NMR experiments have proved indispensable to achieve backbone and side chain assignments, to acquire