WestCHEM, School of Chemistry, The Joseph Black Building , University of Glasgow , Glasgow G12 8QQ , U.K.
Medicinal Chemistry , GlaxoSmithKline Medicines Research Centre , Gunnels Wood Road , Stevenage SG1 2NY , U.K.
J Org Chem. 2019 Aug 16;84(16):10436-10448. doi: 10.1021/acs.joc.9b01685. Epub 2019 Aug 7.
The synthesis of a new class of benzotriazole-derived α-amino acid is described using a highly efficient nucleophilic aromatic substitution of -fluoronitrobenzenes with l-3-aminoalanine and a polymer-supported nitrite reagent-mediated diazotization and cyclization of the subsequent 1,2-aryldiamines as the key steps. Further functionalization of the benzotriazole unit by preparation of halogenated analogues and Suzuki-Miyaura cross-coupling with aryl boronic acids allowed the synthesis of α-amino acids with conjugated side chains. Analysis of the photophysical properties of these α-amino acids revealed that incorporation of electron-rich substituents results in charge-transfer-based, fluorescent compounds with MegaStokes shifts.
描述了一类新型苯并三唑衍生的α-氨基酸的合成方法,该方法以 l-3-丙氨酸为亲核试剂,高效地进行了-氟代硝基苯的芳香亲核取代反应,并通过聚合物负载的亚硝酸酯介导的后续 1,2-芳二胺的重氮化和环化反应作为关键步骤。通过制备卤代类似物和与芳基硼酸的 Suzuki-Miyaura 交叉偶联,进一步对苯并三唑单元进行官能化,从而合成了具有共轭侧链的α-氨基酸。对这些α-氨基酸的光物理性质进行分析表明,引入富电子取代基会导致基于电荷转移的、具有 MegaStokes 位移的荧光化合物。