Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904, United States.
Department of Pharmacology, University of Virginia School of Medicine, Charlottesville, Virginia 22908, United States.
J Am Chem Soc. 2020 May 6;142(18):8270-8280. doi: 10.1021/jacs.0c00648. Epub 2020 Apr 24.
Tuning reactivity of sulfur electrophiles is key for advancing click chemistry and chemical probe discovery. To date, activation of the sulfur electrophile for protein modification has been ascribed principally to stabilization of a fluoride leaving group (LG) in covalent reactions of sulfonyl fluorides and arylfluorosulfates. We recently introduced sulfur-triazole exchange (SuTEx) chemistry to demonstrate the triazole as an effective LG for activating nucleophilic substitution reactions on tyrosine sites of proteins. Here, we probed tunability of SuTEx for fragment-based ligand discovery by modifying the adduct group (AG) and LG with functional groups of differing electron-donating and -withdrawing properties. We discovered the sulfur electrophile is highly sensitive to the position of modification (AG versus LG), which enabled both coarse and fine adjustments in solution and proteome activity. We applied these reactivity principles to identify a large fraction of tyrosine sites (∼30%) on proteins (∼44%) that can be liganded across >1500 probe-modified sites quantified by chemical proteomics. Our proteomic studies identified noncatalytic tyrosine and phosphotyrosine sites that can be liganded by SuTEx fragments with site specificity in lysates and live cells to disrupt protein function. Collectively, we describe SuTEx as a versatile covalent chemistry with broad applications for chemical proteomics and protein ligand discovery.
调变硫亲电试剂的反应性对于推进点击化学和化学探针发现至关重要。迄今为止,通过稳定共价反应中的氟化物离去基团(LG),主要归因于磺酰氟和芳基氟硫酸盐的硫亲电试剂的活化,用于蛋白质修饰。我们最近引入了硫三唑交换(SuTEx)化学,以证明三唑是一种有效的 LG,可激活蛋白质酪氨酸位点上的亲核取代反应。在这里,我们通过用具有不同供电子和吸电子性质的官能团修饰加合物基团(AG)和 LG,探究了 SuTEx 用于片段基配体发现的可调变性。我们发现硫亲电试剂对修饰位置(AG 与 LG)非常敏感,这使得在溶液和蛋白质组活性中都可以进行粗调和微调。我们应用这些反应性原理来鉴定出蛋白质上约 30%的酪氨酸位点(∼44%)可以与通过化学蛋白质组学定量的超过 1500 个探针修饰位点结合。我们的蛋白质组学研究鉴定了非催化性酪氨酸和磷酸酪氨酸位点,这些位点可以通过 SuTEx 片段结合,在裂解物和活细胞中具有特异性,从而破坏蛋白质功能。总的来说,我们将 SuTEx 描述为一种具有广泛应用的多功能共价化学,可用于化学蛋白质组学和蛋白质配体发现。