Normandie Univ, CNRS, UNIROUEN, INSA Rouen, COBRA (UMR 6014) , 76000 Rouen , France.
Bioconjug Chem. 2018 Aug 15;29(8):2497-2513. doi: 10.1021/acs.bioconjchem.8b00252. Epub 2018 Jul 16.
Since their first use in bioconjugation more than 50 years ago, maleimides have become privileged chemical partners for the site-selective modification of proteins via thio-Michael addition of biothiols and, to a lesser extent, via Diels-Alder (DA) reactions with biocompatible dienes. Prominent examples include immunotoxins and marketed maleimide-based antibody-drug conjugates (ADCs) such as Adcetris, which are used in cancer therapies. Among the key factors in the success of these groups is the availability of several maleimides that can be N-functionalized by fluorophores, affinity tags, spin labels, and pharmacophores, as well as their unique reactivities in terms of selectivity and kinetics. However, maleimide conjugate reactions have long been considered irreversible, and only recently have systematic studies regarding their reversibility and stability toward hydrolysis been reported. This review provides an overview of the diverse applications for maleimides in bioconjugation, highlighting their strengths and weaknesses, which are being overcome by recent strategies. Finally, the fluorescence quenching ability of maleimides was leveraged for the preparation of fluorogenic probes, which are mainly used for the specific detection of thiol analytes. A summary of the reported structures, their photophysical features, and their relative efficiencies is discussed in the last part of the review.
自 50 多年前首次在生物偶联中使用以来,马来酰亚胺通过生物硫醇的硫迈克尔加成(thio-Michael addition),并且在较小程度上通过与生物相容的二烯的 Diels-Alder(DA)反应,已成为用于蛋白质位点选择性修饰的重要化学伴侣。突出的例子包括免疫毒素和已上市的基于马来酰亚胺的抗体药物偶联物(ADC),例如用于癌症治疗的 Adcetris。在这些药物成功的关键因素中,有几个马来酰亚胺可以通过荧光团、亲和标签、自旋标记和药效团进行 N-官能化,以及它们在选择性和动力学方面的独特反应性。然而,马来酰亚胺缀合反应长期以来被认为是不可逆的,直到最近才对其水解的可逆性和稳定性进行了系统研究。本文综述了马来酰亚胺在生物偶联中的多种应用,重点介绍了其优缺点,最近的策略正在克服这些缺点。最后,利用马来酰亚胺的荧光猝灭能力来制备荧光探针,主要用于对硫醇分析物的特异性检测。在综述的最后一部分,讨论了报道的结构、光物理性质及其相对效率的总结。