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首页> 外文期刊>Angewandte Chemie >Increasing the Chemical-Shift Dispersion of Unstructured Proteins with a Covalent Lanthanide Shift Reagent
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Increasing the Chemical-Shift Dispersion of Unstructured Proteins with a Covalent Lanthanide Shift Reagent

机译:使用共价镧移试剂提高非结构化蛋白质的化学移分散

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摘要

The study of intrinsically disordered proteins (IDPs) by NMR often suffers from highly overlapped resonances that prevent unambiguous chemical-shift assignments, and data analysis that relies on well-separated resonances. We present a covalent paramagnetic lanthanide-binding tag (LBT) for increasing the chemical-shift dispersion and facilitating the chemical-shift assignment of challenging, repeat-containing IDPs. Linkage of the DOTA-based LBT to a cysteine residue induces pseudo-contact shifts (PCS) for resonances more than 20 residues from the spin-labeling site. This leads to increased chemical-shift dispersion and decreased signal overlap, thereby greatly facilitating chemical-shift assignment. This approach is applicable to IDPs of varying sizes and complexity, and is particularly helpful for repeat-containing IDPs and low-complexity regions. This results in improved efficiency for IDP analysis and binding studies.
机译:通过NMR对内在无序蛋白(IDP)的研究通常会遭受高度重叠的共振,从而阻碍了明确的化学位移分配,而数据分析则依赖于分离良好的共振。我们提出共价顺磁性镧系元素结合标签(LBT),以增加化学位移的分散性,并促进具有挑战性的,重复的IDP的化学位移分配。基于DOTA的LBT与半胱氨酸残基的连接诱导了伪接触位移(PCS),从而使自旋标记位点产生了20个以上的残基。这导致增加的化学位移分散度和减少的信号重叠,从而极大地促进了化学位移分配。此方法适用于各种大小和复杂性的IDP,对于包含重复的IDP和低复杂性区域特别有用。这样可以提高IDP分析和结合研究的效率。

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