Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, U.K.
Champalimaud Centre for the Unknown, Champalimaud Foundation, Lisboa 1400-038, Portugal.
J Am Chem Soc. 2024 Aug 21;146(33):23240-23251. doi: 10.1021/jacs.4c05582. Epub 2024 Aug 7.
Selective cleavage of amide bonds holds prominent significance by facilitating precise manipulation of biomolecules, with implications spanning from basic research to therapeutic interventions. However, achieving selective cleavage of amide bonds via mild synthetic chemistry routes poses a critical challenge. Here, we report a novel amide bond-cleavage reaction triggered by Na[AuCl] in mild aqueous conditions, where a crucial cyclization step leads to the formation of a 5-membered ring intermediate that rapidly hydrolyses to release the free amine in high yields. Notably, the reaction exhibits remarkable site-specificity to cleave peptide bonds at the C-terminus of allyl-glycine. The strategic introduction of a leaving group at the allyl position facilitated a dual-release approach through π-acid catalyzed substitution. This reaction was employed for the targeted release of the cytotoxic drug monomethyl auristatin E in combination with an antibody-drug conjugate in cancer cells. Finally, Au-mediated prodrug activation was shown in a colorectal zebrafish xenograft model, leading to a significant increase in apoptosis and tumor shrinkage. Our findings reveal a novel metal-based cleavable reaction expanding the utility of Au complexes beyond catalysis to encompass bond-cleavage reactions for cancer therapy.
酰胺键的选择性断裂在通过温和的合成化学途径实现时具有挑战性,但通过这种方法能够精确地操作生物分子,其意义重大,影响范围涵盖基础研究到治疗干预。在这里,我们报告了一种在温和的水相条件下由 Na[AuCl]引发的新型酰胺键断裂反应,其中一个关键的环化步骤导致形成 5 元环中间体,该中间体迅速水解以高产率释放游离胺。值得注意的是,该反应具有显著的位点特异性,可在烯丙基甘氨酸的 C 末端切割肽键。在烯丙基位置引入离去基团有助于通过π-酸催化取代实现双重释放方法。该反应用于与抗体药物偶联物联合在癌细胞中靶向释放细胞毒性药物单甲基奥瑞他汀 E。最后,在结直肠斑马鱼异种移植模型中观察到 Au 介导的前药激活,导致细胞凋亡和肿瘤缩小显著增加。我们的研究结果揭示了一种新的基于金属的可裂解反应,将 Au 配合物的用途从催化扩展到包括用于癌症治疗的键裂解反应。