Zheng Mengmeng, Kong Lingchao, Gao Jianmin
Department of Chemistry, Merkert Chemistry Center, Boston College, 2609 Beacon Street, Chestnut Hill, MA 02467, USA.
Chem Soc Rev. 2024 Dec 9;53(24):11888-11907. doi: 10.1039/d4cs00750f.
Novel bioconjugation reactions have been heavily pursued for the past two decades. A myriad of conjugation reactions have been developed for labeling molecules of interest in their native context as well as for constructing multifunctional molecular entities or stimuli-responsive materials. A growing cluster of bioconjugation reactions were realized by tapping into the unique properties of boron. As a rare element in human biology, boronic acids and esters exhibit remarkable biocompatibility. A number of organoboron reagents have been evaluated for bioconjugation, targeting the reactivity of either native biomolecules or those incorporating bioorthogonal functional groups. Owing to the dynamic nature of B-O and B-N bond formation, a significant portion of the boron-enabled bioconjugations exhibit rapid reversibility and accordingly have found applications in the development of reversible covalent inhibitors. On the other hand, stable bioconjugations have been developed that display fast kinetics and significantly expand the repertoire of bioorthogonal chemistry. This contribution presents a summary and comparative analysis of the recently developed boron-mediated bioconjugations. Importantly, this article seeks to provide an in-depth discussion of the thermodynamic and kinetic profiles of these boron-enabled bioconjugations, which reveals structure-reactivity relationships and provides guidelines for bioapplications.
在过去二十年中,人们一直在大力探索新型生物共轭反应。已经开发出无数种共轭反应,用于在天然环境中标记目标分子,以及构建多功能分子实体或刺激响应材料。通过利用硼的独特性质,实现了越来越多的生物共轭反应。作为人类生物学中的稀有元素,硼酸和硼酸酯具有显著的生物相容性。已经评估了多种有机硼试剂用于生物共轭,目标是天然生物分子或含有生物正交官能团的分子的反应性。由于B-O和B-N键形成的动态性质,很大一部分基于硼的生物共轭表现出快速可逆性,因此在可逆共价抑制剂的开发中得到了应用。另一方面,已经开发出具有快速动力学且显著扩展生物正交化学范围的稳定生物共轭。本论文对最近开发的硼介导的生物共轭进行了总结和比较分析。重要的是,本文旨在深入讨论这些基于硼的生物共轭的热力学和动力学概况,揭示结构-反应性关系并为生物应用提供指导。