Department of Bioorganic Chemistry, Leibniz Institute of Plant Biochemistry, Weinberg 3, D-06120, Halle (Saale), Germany.
Laboratory of Synthetic and Biomolecular Chemistry, Faculty of Chemistry, University of Havana, Zapata & G, Havana, 10400, Cuba.
Chemistry. 2024 Jul 25;30(42):e202401943. doi: 10.1002/chem.202401943. Epub 2024 Jul 5.
Tubulysins are among the most recent antimitotic compounds to enter into antibody/peptide-drug conjugate (ADC/PDC) development. Thus far, the design of the most promising tubulysin payloads relied on simplifying their structures, e. g., by using small tertiary amide N-substituents (Me, Et, Pr) on the tubuvaline residue. Cumbersome solution-phase approaches are typically used for both syntheses and functionalization with cleavable linkers. p-Aminobenzyl quaternary ammonium (PABQ) linkers were a remarkable advancement for targeted delivery, but the procedures to incorporate them into tubulysins are only of moderate efficiency. Here we describe a novel all-on-resin strategy permitting a loss-free resin linkage and an improved access to super potent tubulysin analogs showing close resemblance to the natural compounds. For the first time, a protocol enables the integration of on-resin tubulysin derivatization with, e. g., a maleimido-Val-Cit-PABQ linker, which is a notable progress for the payload-PABQ-linker technology. The strategy also allows tubulysin diversification of the internal amide N-substituent, thus enabling to screen a tubulysin library for the discovery of new potent analogs. This work provides ADC/PDC developers with new tools for both rapid access to new derivatives and easier linker-attachment and functionalization.
微管蛋白抑制剂是最近进入抗体/肽药物偶联物(ADC/PDC)开发的抗有丝分裂化合物之一。到目前为止,最有前途的微管蛋白抑制剂有效载荷的设计依赖于简化其结构,例如,在 tubuvaline 残基上使用小的叔酰胺 N-取代基(Me、Et、Pr)。通常使用繁琐的溶液相方法进行合成和与可切割接头的功能化。对氨基苄基季铵(PABQ)接头是靶向递送的显著进展,但将它们掺入微管蛋白抑制剂中的程序效率仅适中。在这里,我们描述了一种新颖的全树脂策略,允许无损失的树脂键合,并可更好地获得与天然化合物非常相似的超强微管蛋白类似物。这是第一次能够在树脂上进行微管蛋白衍生化,例如马来酰亚胺-Val-Cit-PABQ 接头,这是有效载荷-PABQ-接头技术的显著进步。该策略还允许对内部酰胺 N-取代基进行微管蛋白多样化,从而能够筛选微管蛋白文库以发现新的有效类似物。这项工作为 ADC/PDC 开发人员提供了新的工具,可快速获得新衍生物,并更轻松地进行接头连接和功能化。