Site-selective generation of lanthanoid binding sites on proteins using 4-fluoro-2,6-dicyanopyridine.

Q3 Physics and Astronomy
Magnetic resonance (Gottingen, Germany) Pub Date : 2022-09-13 eCollection Date: 2022-01-01 DOI:10.5194/mr-3-169-2022
Sreelakshmi Mekkattu Tharayil, Mithun C Mahawaththa, Akiva Feintuch, Ansis Maleckis, Sven Ullrich, Richard Morewood, Michael J Maxwell, Thomas Huber, Christoph Nitsche, Daniella Goldfarb, Gottfried Otting
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Abstract

The paramagnetism of a lanthanoid tag site-specifically installed on a protein provides a rich source of structural information accessible by nuclear magnetic resonance (NMR) and electron paramagnetic resonance (EPR) spectroscopy. Here we report a lanthanoid tag for selective reaction with cysteine or selenocysteine with formation of a (seleno)thioether bond and a short tether between the lanthanoid ion and the protein backbone. The tag is assembled on the protein in three steps, comprising (i) reaction with 4-fluoro-2,6-dicyanopyridine (FDCP); (ii) reaction of the cyano groups with α-cysteine, penicillamine or β-cysteine to complete the lanthanoid chelating moiety; and (iii) titration with a lanthanoid ion. FDCP reacts much faster with selenocysteine than cysteine, opening a route for selective tagging in the presence of solvent-exposed cysteine residues. Loaded with Tb3+ and Tm3+ ions, pseudocontact shifts were observed in protein NMR spectra, confirming that the tag delivers good immobilisation of the lanthanoid ion relative to the protein, which was also manifested in residual dipolar couplings. Completion of the tag with different 1,2-aminothiol compounds resulted in different magnetic susceptibility tensors. In addition, the tag proved suitable for measuring distance distributions in double electron-electron resonance experiments after titration with Gd3+ ions.

Abstract Image

Abstract Image

Abstract Image

4-氟-2,6-二氰基吡啶在蛋白质上选择性生成镧系元素结合位点
摘要专门安装在蛋白质上的镧系元素标签位点的顺磁性提供了核磁共振(NMR)和电子顺磁共振(EPR)光谱可获得的丰富结构信息来源。在这里,我们报道了一种镧系元素标签,用于与半胱氨酸或硒代半胱氨酸选择性反应,在镧系元素离子和蛋白质骨架之间形成(硒代)硫醚键和短链。通过三个步骤将标签组装在蛋白质上,包括(i)与4-氟-2,6-二氰基吡啶(FDCP)反应;(ii)氰基与α-半胱氨酸、青霉胺或β-半胱氨酸反应以完成镧系元素螯合部分;和(iii)用镧系元素离子进行滴定。FDCP与硒代半胱氨酸的反应比半胱氨酸快得多,为在存在溶剂暴露的半胱氨酸残基的情况下进行选择性标记开辟了途径。在负载Tb3+和Tm3+离子的情况下,在蛋白质NMR光谱中观察到伪接触位移,证实该标签提供了镧系离子相对于蛋白质的良好固定化,这也表现在残留的偶极耦合中。用不同的1,2-氨基硫醇化合物完成标签导致不同的磁化率张量。此外,在用Gd3+离子滴定后,该标签被证明适用于测量双电子-电子共振实验中的距离分布。
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
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审稿时长
14 weeks
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