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首页> 外文期刊>Journal of the American Chemical Society >Installation of Minimal Tetrazines through Silver-Mediated Liebeskind-Srogl Coupling with Arylboronic Acids
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Installation of Minimal Tetrazines through Silver-Mediated Liebeskind-Srogl Coupling with Arylboronic Acids

机译:通过银介导的Liebeskind-Srogl与芳基硼酸的偶联剂安装最小的四嗪

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Described is a general method for the installation of a minimal 6-methyltetrazin-3-yl group via the first example of a Ag-mediated Liebeskind-Srogl cross-coupling. The attachment of bioorthogonal tetrazines on complex molecules typically relies on linkers that can negatively impact the physiochemical properties of conjugates. Cross-coupling with arylboronic acids and a new reagent, 3-((p-biphenyl-4-ylmethyl)thio)-6-methyltetrazine (b-Tz), proceeds under mild, PdCl2(dppf)-catalyzed conditions to introduce minimal, linker-free tetrazine functionality. Safety considerations guided our design of b-Tz which can be prepared on decagram scale without handling hydrazine and without forming volatile, high-nitrogen tetrazine byproducts. Replacing conventional Cu(I) salts used in Liebeskind-Srogl cross-coupling with a Ag2O mediator resulted in higher yields across a broad library of aryl and heteroaryl boronic acids and provides improved access to a fluorogenic tetrazine-BODIPY conjugate. A covalent probe for MAGL incorporating 6-methyltetrazinyl functionality was synthesized in high yield and labeled endogenous MAGL in live cells. This new Ag-mediated cross-coupling method using b-Tz is anticipated to find additional applications for directly introducing the tetrazine subunit to complex substrates.
机译:描述了通过Ag介导的Liebeskind-Srogl交叉偶联的第一个实例来安装最小的6-甲基四嗪-3-基的一般方法。生物正交四嗪在复杂分子上的附着通常依赖于可以对缀合物的理化性质产生负面影响的接头。与芳基硼酸和一种新试剂3-((对-联苯-4-基甲基)硫代)-6-甲基四嗪(b-Tz)的交叉偶联在温和的PdCl2(dppf)催化条件下进行,以引入最少的,无接头的四嗪功能。安全方面的考虑指导了我们b-Tz的设计,这种b-Tz可以按十克规模制备,无需处理肼,也不会形成挥发性高氮四嗪副产物。用Ag2O介质代替Liebeskind-Srogl交叉偶联中使用的常规Cu(I)盐可在宽范围的芳基和杂芳基硼酸文库中获得更高的收率,并改善了获得荧光的四嗪-BODIPY共轭物的途径。结合了6-甲基四嗪基官能团的MAGL共价探针以高产率合成,并在活细胞中标记了内源性MAGL。预期这种使用b-Tz的新的Ag介导的交叉偶联方法将发现将四嗪亚基直接引入复杂基质的其他应用。

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