Tufail Afzaal, Akkad Saeed, Hatton Natasha E, Yates Nicholas D J, Spears Richard J, Keenan Tessa, Parkin Alison, Signoret Nathalie, Fascione Martin A
Department of Chemistry, University of York Heslington York YO10 5DD UK
Hull York Medical School, University of York YO10 5DD UK
RSC Adv. 2024 Jan 24;14(6):3723-3729. doi: 10.1039/d3ra08776j. eCollection 2024 Jan 23.
Novel methods to construct small molecule-protein bioconjugates are integral to the development of new biomedicines for a variety of diseases. C-C linked bioconjugates are increasingly desirable in this application due to their stability and can be accessed through cross aldol bioconjugation of reactive α-oxo aldehyde handles easily introduced at the N-terminus of proteins by periodate oxidation. We previously developed an organocatalyst-mediated protein aldol ligation (OPAL) for chemical modification of these reactive aldehydes, but the efficiency of this method was limited when a proline residue was directly adjacent to the N-terminus due to intramolecular hemiaminal formation. Herein we explore the competition between this cyclisation and the OPAL modification and demonstrate bioconjugation can be favoured through use of acidic pH for both oxidation and OPAL, and optimisation of reaction conditions and organocatalyst. We then showcase the utility of this acidic-OPAL in modification of the cholera toxin B-subunit (CTB), a homo-pentameric protein of biomedical promise.
构建小分子-蛋白质生物共轭物的新方法对于开发针对多种疾病的新型生物药物至关重要。由于其稳定性,C-C连接的生物共轭物在该应用中越来越受到青睐,并且可以通过对经高碘酸盐氧化易于引入蛋白质N端的反应性α-氧代醛处理基团进行交叉羟醛生物共轭来实现。我们之前开发了一种用于这些反应性醛化学修饰的有机催化剂介导的蛋白质羟醛连接反应(OPAL),但当脯氨酸残基直接与N端相邻时,由于分子内半缩醛胺的形成,该方法的效率受到限制。在此,我们探索了这种环化反应与OPAL修饰之间的竞争,并证明通过在氧化和OPAL反应中使用酸性pH值,以及优化反应条件和有机催化剂,可以促进生物共轭反应。然后,我们展示了这种酸性OPAL在修饰霍乱毒素B亚基(CTB)中的应用,CTB是一种具有生物医学前景的同五聚体蛋白质。