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吡啶鎓盐促进的快速亲电半胱氨酸芳基化反应。

Rapid Electrophilic Cysteine Arylation with Pyridinium Salts.

机构信息

Department of Chemistry, University of Rhode Island, 140 Flagg Road, Kingston, Rhode Island02881, United States.

Department of Chemistry, Colgate University, 13 Oak Drive, Hamilton, New York13346, United States.

出版信息

Bioconjug Chem. 2022 Nov 16;33(11):2189-2196. doi: 10.1021/acs.bioconjchem.2c00419. Epub 2022 Nov 6.

Abstract

Here, we present a series of fluorinated cationic reagents that enable rapid arylation of cysteine under mild conditions compatible with proteins and peptides. The highly polarized C-F bond and attractive nucleophile-electrophile Coulombic interactions substantially accelerate cysteine arylation, leading to unusually high rate constants on the order of 100 M·s and allowing for equimolar labeling of substrates at micromolar concentrations. The synthetic modularity of this approach promotes the direct coupling of structurally diverse phenol-containing functional motifs to cysteine residues of biomacromolecules with high efficiency. This user-friendly chemistry enables fast bond formation between commonly used bioconjugation partners, thus greatly streamlining the synthetic chemistry workflow, and can be easily developed as convenient kits for chemical biology and medicinal chemistry applications.

摘要

在这里,我们提出了一系列氟化的阳离子试剂,这些试剂能够在与蛋白质和肽相容的温和条件下快速芳基化半胱氨酸。高度极化的 C-F 键和有吸引力的亲核-亲电库仑相互作用极大地加速了半胱氨酸芳基化,导致非常高的速率常数,约为 100 M·s,并且可以在微摩尔浓度下等摩尔标记底物。这种方法的合成模块化促进了结构多样的含酚官能团的直接偶联到生物大分子的半胱氨酸残基上,具有高效率。这种用户友好的化学方法能够在常用的生物偶联物之间快速形成键,从而大大简化了合成化学工作流程,并且可以很容易地开发为化学生物学和药物化学应用的方便试剂盒。

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