Méndez Yanira, Vasco Aldrin V, Humpierre Ana R, Westermann Bernhard
Department of Bioorganic Chemistry, Leibniz-Institute of Plant Biochemistry, Weinberg 3, 06120 Halle, Germany.
Center for Natural Products Research, Faculty of Chemistry, University of Havana, Zapata y G, Havana 10400, Cuba.
ACS Omega. 2020 Oct 2;5(40):25505-25510. doi: 10.1021/acsomega.0c03728. eCollection 2020 Oct 13.
The property of the isonitrile group to enable the simultaneous α-addition of a strong electrophile and a nucleophile has always attracted the attention of organic chemists. Its versatility is augmented when recognizing that its high structural compactness, the inertia to most of the naturally occurring functional groups, and relatively prolonged physiological and metabolical stability, convert it into the smallest bioorthogonal group. The discovery and optimization of the isonitrile-tetrazine [4+1] cycloaddition as an alternative tool for the development of ligation and decaging strategies and the recently reported reaction of isonitriles with chlorooximes bring new opportunities for the utilization of this functional group in biological systems. Although several approaches have been reported for the synthesis of isonitrile-modified carbohydrates and polysaccharides, its incorporation in proteins has been barely explored. Besides compiling the reported methods for the assembly of isonitrile-modified proteins, this Mini-Review aims at calling attention to the real potential of this modification for protein ligation, decaging, immobilization, imaging, and many other applications at a low structural and functional cost.
异腈基团能够同时实现强亲电试剂和亲核试剂的α-加成,这一特性一直吸引着有机化学家的关注。当认识到其高度的结构紧凑性、对大多数天然存在的官能团的惰性以及相对较长的生理和代谢稳定性,使其成为最小的生物正交基团时,其多功能性得到了增强。异腈-四嗪[4+1]环加成作为连接和脱笼策略开发的替代工具的发现与优化,以及最近报道的异腈与氯肟的反应,为该官能团在生物系统中的应用带来了新机遇。尽管已经报道了几种合成异腈修饰的碳水化合物和多糖的方法,但其在蛋白质中的引入却鲜有探索。除了汇编已报道的异腈修饰蛋白质组装方法外,本综述旨在引起人们对这种修饰在蛋白质连接、脱笼、固定、成像以及许多其他应用方面的真正潜力的关注,且成本低、结构和功能影响小。