Spectroscopically Orthogonal Labelling to Disentangle Site-Specific Nitroxide Label Distributions

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL Applied Magnetic Resonance Pub Date : 2023-09-24 DOI:10.1007/s00723-023-01611-1
Valentina Vitali, Katrin Ackermann, Gregor Hagelueken, Bela E. Bode
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Abstract

Abstract Biomolecular applications of pulse dipolar electron paramagnetic resonance spectroscopy (PDS) are becoming increasingly valuable in structural biology. Site-directed spin labelling of proteins is routinely performed using nitroxides, with paramagnetic metal ions and other organic radicals gaining popularity as alternative spin centres. Spectroscopically orthogonal spin labelling using different types of labels potentially increases the information content available from a single sample. When analysing experimental distance distributions between two nitroxide spin labels, the site-specific rotamer information has been projected into the distance and is not readily available, and the contributions of individual labelling sites to the width of the distance distribution are not obvious from the PDS data. Here, we exploit the exquisite precision of labelling double-histidine (dHis) motifs with Cu II chelate complexes. The contribution of this label to the distance distribution widths in model protein GB1 has been shown to be negligible. By combining a dHis Cu II labelling site with cysteine-specific nitroxide labelling, we gather insights on the label rotamers at two distinct sites, comparing their contributions to distance distributions based on different in silico modelling approaches and structural models. From this study, it seems advisable to consider discrepancies between different in silico modelling approaches when selecting labelling sites for PDS studies.

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光谱正交标记以解开特定位置的氮氧化物标签分布
脉冲偶极电子顺磁共振波谱(PDS)在结构生物学中的生物分子应用越来越有价值。蛋白质的定点自旋标记通常使用氮氧化物进行,顺磁性金属离子和其他有机自由基作为替代自旋中心越来越受欢迎。光谱正交自旋标记使用不同类型的标签潜在地增加了信息含量,从一个单一的样品。在分析两个氮氧化物自旋标记之间的实验距离分布时,特定位点的旋转体信息已经投射到距离中,并且不易获得,并且从PDS数据中可以看出,单个标记位点对距离分布宽度的贡献并不明显。在这里,我们利用Cu II螯合物标记双组氨酸(dHis)基序的精细精度。该标签对模型蛋白GB1的距离分布宽度的贡献已被证明可以忽略不计。通过将dHis Cu II标记位点与半胱氨酸特异性氮氧化物标记位点相结合,我们收集了两个不同位点的标记转子的见解,比较了它们对基于不同硅建模方法和结构模型的距离分布的贡献。从这项研究来看,在选择PDS研究的标记位点时,考虑不同硅片建模方法之间的差异似乎是可取的。
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来源期刊
Applied Magnetic Resonance
Applied Magnetic Resonance 物理-光谱学
CiteScore
1.90
自引率
10.00%
发文量
59
审稿时长
2.3 months
期刊介绍: Applied Magnetic Resonance provides an international forum for the application of magnetic resonance in physics, chemistry, biology, medicine, geochemistry, ecology, engineering, and related fields. The contents include articles with a strong emphasis on new applications, and on new experimental methods. Additional features include book reviews and Letters to the Editor.
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