首页> 外文期刊>Journal of the American Chemical Society >Scope and Mechanism of Direct Indole and Pyrrole Couplings Adjacent to Carbonyl Compounds: Total Synthesis of Acremoauxin A and Oxazinin 3
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Scope and Mechanism of Direct Indole and Pyrrole Couplings Adjacent to Carbonyl Compounds: Total Synthesis of Acremoauxin A and Oxazinin 3

机译:直接吲哚和吡咯偶联羰基化合物的范围和机理:Acremoauxin A和Oxazinin 3的全合成

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摘要

Full details are provided for a recently invented method to couple indoles and pyrroles to carbonyl compounds. The reaction is ideally suited for structurally complex substrates and exhibits high levels of chemoselectivity (functional group tolerability), regioselectivity (coupling occurs exclusively at C-3 of indole or C-2 of pyrrole), stereoselectivity (substrate control), and practicality (amenable to scaleup). In addition, quaternary stereocenters are easily and predictably generated. The reaction has been applied to a number of synthetic problems including total syntheses of members of the hapalindole family of natural products, ketorolac, acremoauxin A, and oxazinin 3. Mechanistically, this coupling protocol appears to operate by a single electron-transfer process requiring generation of an electron-deficient radical adjacent to a carbonyl which is then intercepted by an indole or pyrrole anion.
机译:提供了最新发明的将吲哚和吡咯偶联至羰基化合物的方法的全部细节。该反应非常适合结构复杂的底物,并显示出高水平的化学选择性(官能团耐受性),区域选择性(偶联仅在吲哚的C-3或吡咯的C-2发生),立体选择性(底物控制)和实用性(适当)扩大规模)。另外,容易且可预测地生成四元立体中心。该反应已应用于许多合成问题,包括天然产物哈帕吲哚家族成员的整体合成,酮咯酸,阿莫莫那汀A和恶嗪嗪3的合成。从机理上讲,这种耦合方案似乎是通过单个电子转移过程来进行的,该过程需要生成与羰基相邻的缺电子自由基的一部分,然后被吲哚或吡咯阴离子拦截。

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