生物结合
化学
立体选择性
寡肽
氨基酸
氧化剂
立体中心
组合化学
氧化磷酸化
甲烷氧化偶联
有机化学
生物化学
肽
催化作用
对映选择合成
作者
Henriette N. Tobiesen,Lars A. Leth,Marc V. Iversen,Line Næsborg,Søren Bertelsen,Karl Anker Jørgensen
标识
DOI:10.1002/anie.202008513
摘要
Abstract The first stereoselective, near‐equimolar, and metal‐free oxidative bioconjugation of amino acids and oligopeptides to aldehydes is presented. Based on a newly developed organocatalytic oxidative concept, the C‐terminal and side‐chain carboxylic acid functionalities of amino acids and oligopeptides are shown to couple in a stereoselective manner to α‐branched aldehydes catalyzed by a chiral primary amine and a quinone as oxidizing agent. The oxidative coupling generally proceeds in high yield. For aspartic acid, selective coupling of the side‐chain, or the C‐terminal carboxylic acid, is demonstrated depending on the protection strategy. The stereoselective, oxidative bioconjugation concept is extended to a series of oligopeptides where coupling to carboxylic acid functionalities is presented. Bioorthogonal linker molecules for further functionalization are obtained by merging the oxidative coupling strategy with the click concept. It is demonstrated that the configuration of the new stereocenter is determined exclusively by the organocatalyst.
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