Department of Chemistry, State University of New York at Buffalo, Buffalo, New York 14260-3000, United States.
J Am Chem Soc. 2011 Oct 5;133(39):15316-9. doi: 10.1021/ja2066913. Epub 2011 Sep 13.
Bioorthogonal reactions suitable for functionalization of genetically or metabolically encoded alkynes, for example, copper-catalyzed azide-alkyne cycloaddition reaction ("click chemistry"), have provided chemical tools to study biomolecular dynamics and function in living systems. Despite its prominence in organic synthesis, copper-free Sonogashira cross-coupling reaction suitable for biological applications has not been reported. In this work, we report the discovery of a robust aminopyrimidine-palladium(II) complex for copper-free Sonogashira cross-coupling that enables selective functionalization of a homopropargylglycine (HPG)-encoded ubiquitin protein in aqueous medium. A wide range of aromatic groups including fluorophores and fluorinated aromatic compounds can be readily introduced into the HPG-containing ubiquitin under mild conditions with good to excellent yields. The suitability of this reaction for functionalization of HPG-encoded ubiquitin in Escherichia coli was also demonstrated. The high efficiency of this new catalytic system should greatly enhance the utility of Sonogashira cross-coupling in bioorthogonal chemistry.
适合对遗传或代谢编码炔烃进行功能化的生物正交反应,例如铜催化的叠氮-炔环加成反应(“点击化学”),为研究生物分子在活系统中的动态和功能提供了化学工具。尽管铜催化的 Sonogashira 交叉偶联反应在有机合成中具有重要地位,但尚未有适用于生物应用的无铜 Sonogashira 交叉偶联反应的报道。在这项工作中,我们报告了一种用于无铜 Sonogashira 交叉偶联的稳定的氨基嘧啶-钯(II)配合物的发现,该配合物能够在水介质中选择性地对同丙炔基甘氨酸(HPG)编码的泛素蛋白进行功能化。在温和条件下,该反应可以高收率、良好到优异的产率将各种芳基基团(包括荧光团和氟化芳香族化合物)轻易地引入到含有 HPG 的泛素中。还证明了该反应适用于在大肠杆菌中对 HPG 编码的泛素进行功能化。该新催化体系的高效率应大大增强 Sonogashira 交叉偶联在生物正交化学中的实用性。