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首页> 外文期刊>Journal of the American Chemical Society >Heterocycloalkynes Fused to a Heterocyclic Core: Searching for an Island with Optimal Stability-Reactivity Balance
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Heterocycloalkynes Fused to a Heterocyclic Core: Searching for an Island with Optimal Stability-Reactivity Balance

机译:杂交到杂环核心融合的杂环酸:寻找具有最佳稳定性 - 反应性平衡的岛屿

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摘要

In the search for fundamentally new, active, stable, and readily synthetically accessible cycloalkynes as strain-promoted azide-alkyne cycloaddition (SPAAC) reagents for bioorthogonal bioconjugation, we integrated two common approaches: the reagent destabilization by the increase of a ring strain and the transition state stabilization through electronic effects. As a result new SPAAC reagents, heterocyclononynes fused to a heterocyclic core, were created. These compounds can be obtained through a general synthetic route based on four crucial steps: the electro- phile-promoted cyclization, Sonogashira coupling, Nicholas reaction, and final deprotection of Co-complexes of cycloalkynes from cobalt. Varying the natures of the heterocycle and heteroatom allows for reaching the optimal stability-reactivity balance for new strained systems. Computational and experimental studies revealed similar SPAAC reactivities for stable 9-membered isocoumarin- and benzothiophene-fused heterocycloalkynes and their unstable 8-membered homologues. We discovered that close reactivity is a result of the interplay of two electronic effects, which stabilize SPAAC transition states (π_(in)* →σ* and π* →π_(in)*) with structural effects such as conformational changes from eclipsed to staggered conformations in the cycloalkyne scaffold, that noticeably impact alkyne bending and reactivity. The concerted influence of a heterocycle and a heteroatom on the polarization of a triple bond in highly strained cycles along with a low HOMO-LUMO gap was assumed to be the reason for the unpredictable kinetic instability of all the cyclooctynes and the benzothiophene-fused oxacyclononyne. The applicability of stable isocoumarin- fused azacyclononyne IC9N-BDP-FL for in vitro bioconjugation was exemplified by labeling and visualization of HEK293 cells carrying azido-DNA and azido-glycans.
机译:在寻求基本上新的,活性,稳定和易于合成的可综合性环杨作为生物正交生物杂交化的菌株促进的叠氮化物 - 炔环加湿(SPAAC)试剂,我们综合了两种常见方法:通过环菌株的增加和试剂破坏化通过电子效应过渡状态稳定。结果,新的SPAAC试剂,融合给杂环核心的杂环源性。这些化合物可以通过基于四个关键步骤通过一般的合成途径获得:电视促进的环化,Sonogashira偶联,尼古拉斯反应,以及来自钴的环氧化物的共聚物的最终脱保护。改变杂环和杂原子的自然允许达到新紧张系统的最佳稳定性反应性平衡。计算和实验研究揭示了稳定的9-元等异种素蛋白和苯并噻吩稠合杂环烯烃及其不稳定的8-元同源物的类似SPAAC重塑。我们发现,紧密的反应性是两个电子效果的相互作用的结果,其稳定SPAAC转换状态(π_(in)*→σ*和π*→π_(in)*),其结构效应(例如来自eclipsed的构象变化)在Cyclokyne支架中交错的构象,显着影响炔烃弯曲和反应性。杂环和杂原子对高度应变循环中三键的偏振的齐心果的齐心果,并且假设是低同质叶片间隙的原因是所有环荷与苯并噻吩融合的氧扫描瘤的不可预测的动力学不稳定性的原因。通过携带Azido-DNA和αzido-聚糖的HEK293细胞的标记和可视化,举例说明了稳定的Isocoumarin-Fused Azacyclononyne IC9N-BDP-FL的适用性。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第40期|16519-16537|共19页
  • 作者单位

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Nanotechnology Research and Education Centre RAS Saint Petersburg Academic University 194021 Saint Petersburg Russia;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

    Institute of Organic Chemistry (IOC) Karlsruhe Institute of Technology (KIT) 76131 Karlsruhe Germany Institute of Biological and Chemical Systems-Functional Molecular Systems (IBCS-FMS) Karlsruhe Institute of Technology (KIT) 76344 Eggenstein-Leopoldshafen Germany;

    Institute of Chemistry Saint Petersburg State University (SPbU) 199034 Saint Petersburg Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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