Localising nuclear spins by pseudocontact shifts from a single tagging site.

Q3 Physics and Astronomy
Magnetic resonance (Gottingen, Germany) Pub Date : 2022-05-09 eCollection Date: 2022-01-01 DOI:10.5194/mr-3-65-2022
Henry W Orton, Elwy H Abdelkader, Lydia Topping, Stephen J Butler, Gottfried Otting
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引用次数: 0

Abstract

Ligating a protein at a specific site with a tag molecule containing a paramagnetic metal ion provides a versatile way of generating pseudocontact shifts (PCSs) in nuclear magnetic resonance (NMR) spectra. PCSs can be observed for nuclear spins far from the tagging site, and PCSs generated from multiple tagging sites have been shown to enable highly accurate structure determinations at specific sites of interest, even when using flexible tags, provided the fitted effective magnetic susceptibility anisotropy (Δχ) tensors accurately back-calculate the experimental PCSs measured in the immediate vicinity of the site of interest. The present work investigates the situation where only the local structure of a protein region or bound ligand is to be determined rather than the structure of the entire molecular system. In this case, the need for gathering structural information from tags deployed at multiple sites may be queried. Our study presents a computational simulation of the structural information available from samples produced with single tags attached at up to six different sites, up to six different tags attached to a single site, and in-between scenarios. The results indicate that the number of tags is more important than the number of tagging sites. This has important practical implications, as it is much easier to identify a single site that is suitable for tagging than multiple ones. In an initial experimental demonstration with the ubiquitin mutant S57C, PCSs generated with four different tags at a single site are shown to accurately pinpoint the location of amide protons in different segments of the protein.

Abstract Image

Abstract Image

Abstract Image

定位核自旋的伪接触移位从一个单一的标记点
摘要在核磁共振(NMR)光谱中,将蛋白质与含有顺磁性金属离子的标签分子连接在特定位点提供了一种产生假接触位移(PCSs)的通用方法。可以在远离标记位点的核自旋中观察到PCSs,并且从多个标记位点产生的PCSs已被证明可以在特定感兴趣的位点上进行高度精确的结构确定,即使使用柔性标签,只要拟合的有效磁化率各向异性张量(Δχ)准确地反算在感兴趣位点附近测量的实验PCSs。目前的工作调查的情况下,只有局部结构的一个蛋白质区域或结合配体是确定,而不是整个分子系统的结构。在这种情况下,可能需要从部署在多个站点的标签中收集结构信息。我们的研究提出了一个结构信息的计算模拟,从样品中获得的结构信息,在多达六个不同的位置上附着单个标签,在单个位置上附着多达六个不同的标签,以及在两者之间的场景。结果表明,标签的数量比标签站点的数量更重要。这具有重要的实际意义,因为识别适合标记的单个站点要比识别多个站点容易得多。在泛素突变体S57C的初步实验演示中,在单个位点上由四个不同标签生成的PCSs被证明可以准确地确定蛋白质不同片段中酰胺质子的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.50
自引率
0.00%
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0
审稿时长
14 weeks
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