化学
电泳剂
区域选择性
亲核细胞
天冬氨酸
氨基酸
立体化学
裂解酶
蛋白质工程
生物化学
组合化学
催化作用
酶
有机化学
作者
Hans Raj,Wiktor Szymański,Jandré de Villiers,H.J. Rozeboom,Vinod Puthan Veetil,Carlos R. Reis,Marianne de Villiers,Frank J. Dekker,S. De Wildeman,Wim J. Quax,A.M.W.H. Thunnissen,Ben L. Feringa,Dick B. Janssen,Gerrit J. Poelarends
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2012-04-27
卷期号:4 (6): 478-484
被引量:85
摘要
The redesign of enzymes to produce catalysts for a predefined transformation remains a major challenge in protein engineering. Here, we describe the structure-based engineering of methylaspartate ammonia lyase (which in nature catalyses the conversion of 3-methylaspartate to ammonia and 2-methylfumarate) to accept a variety of substituted amines and fumarates and catalyse the asymmetric synthesis of aspartic acid derivatives. We obtained two single-active-site mutants, one exhibiting a wide nucleophile scope including structurally diverse linear and cyclic alkylamines and one with broad electrophile scope including fumarate derivatives with alkyl, aryl, alkoxy, aryloxy, alkylthio and arylthio substituents at the C2 position. Both mutants have an enlarged active site that accommodates the new substrates while retaining the high stereo- and regioselectivity of the wild-type enzyme. As an example, we demonstrate a highly enantio- and diastereoselective synthesis of threo-3-benzyloxyaspartate (an important inhibitor of neuronal excitatory glutamate transporters in the brain).
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