EaStChem School of Chemistry, University of Edinburgh, Joseph Black Building, Kings Buildings, West Mains Road, EH9 3FJ, Edinburgh, UK.
Chembiochem. 2024 Aug 1;25(15):e202400195. doi: 10.1002/cbic.202400195. Epub 2024 Jun 24.
The incorporation of fluorine atoms into a biomacromolecule provides a background-free and environmentally sensitive reporter of structure, conformation and interactions using F NMR. There are several methods to introduce the F reporter - either by synthetic incorporation via solid phase peptide synthesis; by suppressing the incorporation or biosynthesis of a natural amino acid and supplementing the growth media with a fluorinated counterpart during protein expression; and by genetic code expansion to add new amino acids to the amino acid alphabet. This review aims to discuss progress in the field of introducing fluorinated handles into biomolecules for NMR studies by post-translational bioconjugation or 'fluorine-tagging'. We will discuss the range of chemical tagging 'warheads' that have been used, explore the applications of fluorine tags, discuss ways to enhance reporter sensitivity and how the signal to noise ratios can be boosted. Finally, we consider some key challenges of the field and offer some ideas for future directions.
将氟原子掺入生物大分子中,使用 F NMR 提供了一种无背景且对结构、构象和相互作用敏感的报告基团。有几种方法可以引入 F 报告基团 - 要么通过固相肽合成进行合成掺入;要么通过抑制天然氨基酸的掺入或生物合成,并在蛋白质表达期间用氟化对应物补充生长培养基;要么通过遗传密码扩展将新的氨基酸添加到氨基酸字母表中。本综述旨在讨论通过翻译后生物缀合或“氟标记”将氟化接头引入生物分子进行 NMR 研究的领域进展。我们将讨论使用的各种化学标记“弹头”,探索氟标记的应用,讨论如何提高报告基团的灵敏度以及如何提高信噪比。最后,我们考虑了该领域的一些关键挑战,并为未来的方向提供了一些思路。