Département Médicaments et Technologies pour la Santé (DMTS), SCBM, Université Paris Saclay, CEA, INRAE, 91191 Gif-sur-Yvette, France.
Université Paris-Saclay, CNRS, Institut de Chimie des Substances Naturelles, UPR 2301, 91198 Gif-sur-Yvette, France.
J Am Chem Soc. 2023 Feb 1;145(4):2219-2229. doi: 10.1021/jacs.2c09865. Epub 2023 Jan 19.
Bioorthogonal click-and-release reactions are powerful tools for chemical biology, allowing, for example, the selective release of drugs in biological media, including inside animals. Here, we developed two new families of iminosydnone mesoionic reactants that allow a bioorthogonal release of electrophilic species under physiological conditions. Their synthesis and reactivities as dipoles in cycloaddition reactions with strained alkynes have been studied in detail. Whereas the impact of the pH on the reaction kinetics was demonstrated experimentally, theoretical calculations suggest that the newly designed dipoles display reduced resonance stabilization energies compared to previously described iminosydnones, explaining their higher reactivity. These mesoionic compounds react smoothly with cycloalkynes under physiological, copper-free reaction conditions to form a click pyrazole product together with a released alkyl- or aryl-isocyanate. With rate constants up to 1000 M s, this click-and-release reaction is among the fastest described to date and represents the first bioorthogonal process allowing the release of isocyanate electrophiles inside living cells, offering interesting perspectives in chemical biology.
生物正交的点击-释放反应是化学生物学的有力工具,例如,可以在生物介质中(包括动物体内)选择性释放药物。在这里,我们开发了两种新型亚氨基噁二嗪类介离子反应试剂,可在生理条件下释放亲电物质。详细研究了它们作为偶极子与张力炔烃进行环加成反应的合成和反应性。尽管实验证明了 pH 值对反应动力学的影响,但理论计算表明,与以前描述的亚氨基噁二嗪相比,新设计的偶极子显示出较低的共振稳定能,这解释了它们更高的反应活性。这些介离子化合物在生理条件下、无铜条件下与环炔烃顺利反应,形成点击吡唑产物,同时释放出烷基或芳基异氰酸酯。其速率常数高达 1000 M s,这是迄今为止报道的最快的点击-释放反应之一,也是第一个允许在活细胞内释放异氰酸酯亲电试剂的生物正交过程,为化学生物学提供了有趣的前景。