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Synthesis and Reactivity Comparisons of 1-Methyl-3-Substituted Cyclopropene Mini-tags for Tetrazine Bioorthogonal Reactions

机译:川tr嗪生物正交反应的1-甲基-3-取代的环丙烯小标签的合成及反应性比较

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摘要

Substituted cyclopropenes have recently attracted attention as stable "mini-tags" that are highly reactive dienophiles with the bioorthogonal tetrazine functional group. Despite this interest, the synthesis of stable cyclopropenes is not trivial and their reactivity patterns are poorly understood. Here, the synthesis and comparison of the reactivity of a series of 1-methyl-3-substituted cyclopropenes with different functional handles is described. The rates at which the various substituted cyclopropenes undergo Diels–Alder cycloadditions with 1,2,4,5-tetrazines were measured. Depending on the substituents, the rates of cycloadditions vary by over two orders of magnitude. The substituents also have a dramatic effect on aqueous stability. An outcome of these studies is the discovery of a novel 3-amidomethyl substituted methylcyclopropene tag that reacts twice as fast as the fastest previously disclosed 1-methyl-3-substituted cyclopropene while retaining excellent aqueous stability. Furthermore, this new cyclopropene is better suited for bioconjugation applications and this is demonstrated through using DNA templated tetrazine ligations. The effect of tetrazine structure on cyclopropene reaction rate was also studied. Surprisingly, 3-amidomethyl substituted methylcyclopropene reacts faster than trans-cyclooctenol with a sterically hindered and extremely stable tert-butyl substituted tetrazine. Density functional theory calculations and the distortion/interaction analysis of activation energies provide insights into the origins of these reactivity differences and a guide to the development of future tetrazine coupling partners. The newly disclosed cyclopropenes have kinetic and stability advantages compared to previously reported dienophiles and will be highly useful for applications in organic synthesis, bioorthogonal reactions, and materials science.
机译:取代的环丙烯作为稳定的“小标签”最近引起了人们的关注,这些“小标签”是具有生物正交四嗪官能团的高反应性亲双烯体。尽管有这种兴趣,但稳定的环丙烯的合成并非易事,而且它们的反应性模式知之甚少。在此,描述了一系列具有不同功能键的1-甲基-3-取代的环丙烯的反应性的合成和比较。测量了各种取代的环丙烯与1,2,4,5-四嗪进行Diels-Alder环加成反应的速率。取决于取代基,环加成的速率变化超过两个数量级。取代基对水稳定性也具有显着影响。这些研究的结果是发现了新颖的3-酰胺基甲基取代的甲基环丙烯标签,其反应速度是先前公开的最快的1-甲基-3-取代的环丙烯的两倍,同时保留了出色的水稳定性。此外,这种新的环丙烯更适合生物偶联应用,这通过使用DNA模板化的四嗪连接来证明。还研究了四嗪结构对环丙烯反应速率的影响。出人意料的是,3-酰胺基甲基取代的甲基环丙烯与反式环辛烯醇的反应比具有空间位阻且极其稳定的叔丁基取代的四嗪反应快。密度泛函理论计算和活化能的畸变/相互作用分析为洞悉这些反应性差异的起因提供了见识,并为未来四嗪偶联伙伴的发展提供了指南。与先前报道的亲二烯体相比,新公开的环丙烯具有动力学和稳定性方面的优势,对于有机合成,生物正交反应和材料科学中的应用将非常有用。

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