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抗(2S,3S)-和顺式(2R,3S)-二氨基丁酸的不对称合成。

Asymmetric synthesis of anti-(2S,3S)- and syn-(2R,3S)-diaminobutanoic acid.

作者信息

Bunnage Mark E, Burke Anthony J, Davies Stephen G, Millican Nicholas L, Nicholson Rebecca L, Roberts Paul M, Smith Andrew D

机构信息

The Dyson Perrins Laboratory, University of Oxford, South Parks Road, Oxford, UK OX1 3QY.

出版信息

Org Biomol Chem. 2003 Nov 7;1(21):3708-15. doi: 10.1039/b306936m.

Abstract

Conjugate addition of homochiral lithium N-benzyl-N-alpha-methylbenzylamide to tert-butyl (E)-cinnamate or tert-butyl (E)-crotonate and in situ amination with trisyl azide results in the exclusive formation of the corresponding 2-diazo-3-amino esters in > 95% de. Amination of the lithium (E)-enolates of tert-butyl (3S,alphaR)-3-N-benzyl-N-alpha-methylbenzylamino-3-phenylpropanoate or tert-butyl (3S,alphaS)-3-N-benzyl-N-alpha-methylbenzylaminobutanoate with trisyl azide gives the (2R,3R,alphaR)- and (2S,3S,alphaS )-anti-2-azido-3-amino esters in good yields and in 85% de and > 95% de respectively. Alternatively, tert-butyl anti-(2S,3S,alphaS)-2-hydroxy-3-N-benzyl-N-alpha-methylbenzylaminobutanoate may be converted selectively to tert-butyl anti-(2S,3S,alphaS)-2-azido-3-N-benzyl-N-alpha-methylbenzylaminobutanoate by aziridinium ion formation and regioselective opening with azide. Deprotection of tert-butyl (2S,3S,alphaS)-2-azido-3-aminobutanoate via Staudinger reduction, hydrogenolysis and ester hydrolysis furnishes anti-(2S,3S)-diaminobutanoic acid in 98%, de and 98% ee. The asymmetric synthesis of the diastereomeric syn-(2R,3S)-diaminobutanoic acid (98% de and 98% ee) was accomplished via functional group manipulation of tert-butyl anti-(2S,3S,alphaS)-2-hydroxy-3-N-benzyl-N-alpha-methylbenzylaminobutanoate in a protocol involving azide inversion of tert-butyl (2S,3S)-2-mesyloxy-3-N-Boc-butanoate and subsequent deprotection.

摘要

将同手性的N-苄基-N-α-甲基苄基锂酰胺与叔丁基(E)-肉桂酸酯或叔丁基(E)-巴豆酸酯进行共轭加成,并与三甲基叠氮化物进行原位胺化反应,可专一性地生成相应的2-重氮基-3-氨基酯,非对映体过量率大于95%。用三甲基叠氮化物对叔丁基(3S,αR)-3-N-苄基-N-α-甲基苄基氨基-3-苯丙酸酯或叔丁基(3S,αS)-3-N-苄基-N-α-甲基苄基氨基丁酸酯的锂(E)-烯醇化物进行胺化反应,分别以良好的产率得到(2R,3R,αR)-和(2S,3S,αS)-反式-2-叠氮基-3-氨基酯,非对映体过量率分别为85%和大于95%。另外,叔丁基反式-(2S,3S,αS)-2-羟基-3-N-苄基-N-α-甲基苄基氨基丁酸酯可通过形成氮丙啶离子并与叠氮化物进行区域选择性开环反应,选择性地转化为叔丁基反式-(2S,3S,αS)-2-叠氮基-3-N-苄基-N-α-甲基苄基氨基丁酸酯。通过施陶丁格还原、氢解和酯水解对叔丁基(2S,3S,αS)-2-叠氮基-3-氨基丁酸酯进行脱保护,可得到对映体过量率为98%、非对映体过量率为98%的反式-(2S,3S)-二氨基丁酸。通过对叔丁基反式-(2S,3S,αS)-2-羟基-3-N-苄基-N-α-甲基苄基氨基丁酸酯进行官能团操作,在涉及叔丁基(2S,3S)-2-甲磺酰氧基-3-N-Boc-丁酸酯的叠氮化物构型翻转及随后脱保护的方案中,完成了非对映体顺式-(2R,3S)-二氨基丁酸(非对映体过量率98%,对映体过量率98%)的不对称合成。

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