Rehpenn Andreas, Hindelang Stephan, Truong Khai-Nghi, Pöthig Alexander, Storch Golo
Technical University of Munich (TUM), School of Natural Sciences and Catalysis Research Center (CRC), Lichtenbergstr. 4, 85747, Garching, Germany.
Rigaku Europe SE, Hugenottenallee 167, 63263, Neu-Isenburg, Germany.
Angew Chem Int Ed Engl. 2024 Apr 15;63(16):e202318590. doi: 10.1002/anie.202318590. Epub 2024 Mar 6.
The isoalloxazine heterocycle of flavin cofactors reacts with various nucleophiles to form covalent adducts with important functions in enzymes. Molecular flavin models allow for the characterization of such adducts and the study of their properties. A fascinating set of reactions occurs when flavins react with hydroxide base, which leads to imidazolonequinoxalines, ring-contracted flavins, with so far unexplored activity. We report a systematic study of the photophysical properties of this new chromophore by absorption and emission spectroscopy as well as cyclic voltammetry. Excited, ring-contracted flavins are significantly stronger hydrogen atom abstractors when compared to the parent flavins, which allowed the direct trifluoromethylthiolation of aliphatic methine positions (bond dissociation energy (BDE) of 400.8 kJ mol). In an orthogonal activity, their increased triplet energy (E(S←T)=244 kJ mol) made sensitized reactions possible which exceeded the power of standard flavins. Combining both properties, ring-contracted flavin catalysts enabled the one-pot, five-step transformation of α-tropolone into trans-3,4-disubstituted cyclopentanones. We envision this new class of flavin-derived chromophores to open up new modes of reactivity that are currently impossible with unmodified flavins.
黄素辅因子的异咯嗪杂环与各种亲核试剂反应,形成在酶中具有重要功能的共价加合物。分子黄素模型有助于表征此类加合物并研究其性质。当黄素与氢氧化物碱反应时会发生一系列引人入胜的反应,生成咪唑并喹喔啉,即环收缩黄素,其活性迄今尚未得到探索。我们通过吸收光谱、发射光谱以及循环伏安法对这种新发色团的光物理性质进行了系统研究。与母体黄素相比,激发态的环收缩黄素是更强的氢原子抽取剂,这使得脂肪族次甲基位置能够直接进行三氟甲硫基化反应(键解离能(BDE)为400.8 kJ mol)。在一种正交活性中,它们增加的三线态能量(E(S←T)=244 kJ mol)使得敏化反应成为可能,其效果超过了标准黄素。结合这两种性质,环收缩黄素催化剂能够实现α-托酚酮一锅法五步转化为反式-3,4-二取代环戊酮。我们设想这类新的黄素衍生发色团将开启目前未修饰黄素无法实现的新反应模式。