Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou, 310014, China.
Zhejiang Yangshengtang Institute of Natural Medication Co., Ltd, Hangzhou, 310013, China.
Adv Sci (Weinh). 2024 Nov;11(42):e2408180. doi: 10.1002/advs.202408180. Epub 2024 Sep 19.
Metal-mediated chemical transformations are promising approaches to manipulate and regulate proteins in fundamental biological research and therapeutic development. Nevertheless, unlike bond-forming reactions, the exploration of selective bond cleavage reactions catalyzed by metals that are fully compatible with proteins and living systems remains relatively limited. Here, it is reported that Copper(II)/tris(3-hydroxypropyltriazolylmethyl)amine (THPTA), commonly used in copper-catalyzed azide-alkyne cycloaddition (CuAAC) reaction, can be repurposed as a new bioorthogonal catalyst for thiazolidine (Thz) bond cleavage. This process liberates an α-oxo-aldehyde group under physiological conditions, without requiring additional additives. To showcase the utility of this method, this simple catalyst system is coupled with genetic code expansion technology to achieve on-demand activation of genetically encoded Thz-caged α-oxo-aldehydes, enabling further functionalization of proteins. For the first time, this cell-compatible Thz uncaging reaction allows for the site-specific installation of α-oxo-aldehydes at the internal positions of proteins in phage and bacterial surface display systems, expanding the chemical space of proteins. Overall, this study expands the toolkit of bioorthogonal catalysts and paves the way for metal-promoted chemical reactions in living systems, potentially benefiting various applications in the future.
金属介导的化学转化是一种有前途的方法,可以在基础生物学研究和治疗开发中操纵和调节蛋白质。然而,与键形成反应不同,完全与蛋白质和生物体系兼容的金属催化的选择性键断裂反应的探索仍然相对有限。在这里,据报道,铜(II)/三(3-羟丙基三唑基甲基)胺(THPTA),通常用于铜催化的叠氮-炔环加成(CuAAC)反应,可以重新用作噻唑(Thz)键断裂的新生物正交催化剂。该过程在生理条件下释放α-氧代醛基,而不需要额外的添加剂。为了展示该方法的实用性,该简单的催化剂体系与遗传密码扩展技术结合,实现了对基因编码的 Thz 封闭的α-氧代醛的按需激活,从而进一步对蛋白质进行功能化。这是首次在细胞兼容的 Thz 解笼反应中,可以在噬菌体和细菌表面展示系统中蛋白质的内部位置定点安装α-氧代醛,扩展了蛋白质的化学空间。总的来说,这项研究扩展了生物正交催化剂的工具包,并为金属促进的化学反应在生物体系中的应用铺平了道路,未来可能会在各种应用中受益。