Present address: Department of Chemistry, Emory University, Atlanta, GA, 30322, USA.
Department of Chemistry and Biochemistry, Auburn University, Auburn, AL, 36849, USA.
Angew Chem Int Ed Engl. 2021 Mar 22;60(13):7344-7352. doi: 10.1002/anie.202013997. Epub 2021 Feb 24.
Lysine monomethylation (Kme) is an impactful post-translational modification (PTM) responsible for regulating biological processes and implicated in diseases, thus there is great interest in identifying these methylation marks globally. However, the progress in this area has been challenging because the addition of a small methyl group on lysine leads to negligible change in the bulk, charge, and hydrophobicity. Herein, we report an empowering chemical technology selective triazenation reaction, which we term "STaR", of secondary amines using arene diazonium salts to achieve highly selective, rapid, and robust tagging of Kme peptides from a complex mixture under biocompatible conditions. Although the resulting triazene-linkage with Kme is stable, we highlight the efficient decoupling of the triazene-conjugate to afford unmodified starting components under mild conditions when desired. Our work establishes a unique chemoselective, traceless bioconjugation strategy for the selective enrichment of Kme PTMs.
赖氨酸单甲基化(Kme)是一种影响深远的翻译后修饰(PTM),负责调节生物过程,并与疾病有关,因此人们非常有兴趣全局识别这些甲基化标记。然而,该领域的进展一直具有挑战性,因为赖氨酸上添加一个小甲基基团会导致其体积、电荷和疏水性几乎没有变化。在此,我们报告了一种强大的化学技术——选择性三氮烯化反应(STaR),使用芳基重氮盐对仲胺进行选择性三氮烯化反应,在生物相容性条件下,从复杂混合物中快速、高选择性、稳健地标记 Kme 肽。虽然与 Kme 的三氮烯键连接稳定,但我们强调了在需要时,在温和条件下,通过有效解偶联三氮烯-缀合物,获得未修饰的起始组分。我们的工作为选择性富集 Kme PTM 建立了一种独特的化学选择性、无痕生物偶联策略。