A New Method of Synthesis of 6-Substituted Piperidine-2,4-diones from Homoallylamines

被引:18
作者
Kuznetsov, Nikolai Yu. [1 ]
Maleev, Victor I. [1 ]
Khrustalev, Victor N. [1 ]
Mkrtchyan, Anna F. [1 ]
Godovikov, Ivan A. [1 ]
Strelkova, Tatyana V. [1 ]
Bubnov, Yuri N. [1 ]
机构
[1] Russian Acad Sci, AN Nesmeyanov Organoelement Cpds Inst, Moscow 119991, Russia
基金
俄罗斯基础研究基金会;
关键词
Allylic compounds; Boranes; Allylation; Nitrogen heterocycles; Rearrangement; CDC7 KINASE INHIBITORS; BETA-AMINO ACIDS; ASYMMETRIC-SYNTHESIS; DIASTEREOSELECTIVE SYNTHESIS; STEREOSELECTIVE SYNTHESIS; CONFORMATIONAL-ANALYSIS; CONVENIENT SYNTHESIS; ALLYLBORATION; DERIVATIVES; CYCLIZATION;
D O I
10.1002/ejoc.201101114
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Mono- and dihomoallylamines serve as convenient precursors for the preparation of 6-substituted piperidine-2,4-diones. This transformation is based, on the one hand, on a simple and well-known halocyclocarbamation reaction proceeding by the addition of a source of cationic halogen to the N-Boc-protected homoallylamines and, on the other, on a new enolate-isocyanate rearrangement that proceeds by the action of strong bases on bromocyclocarbamates. A set of racemic dihomoallylamines were prepared by the allylboration of nitriles or primary amides with triallylborane and enantiomerically enriched N-Boc-1-phenyl-3-butenylamine was synthesized by the addition of (-)-AllB(Ipc)(2) to the corresponding silylimine. Chiral precursors containing a carboxylic ester group were synthesized from (S)-allylglycine and -alanine. The reactions of N-Boc derivatives with NBS smoothly produced the corresponding bromocyclocarbamates either in the form of a single diastereomer or as an isomeric mixture. All these bromourethanes were cleanly transformed into 6-substituted piperidine-2,4-diones in good yields via the formation of intermediate cyclic enolates, which was confirmed by the direct synthesis of enolate 12 and its transformation into dione 8 in a series of kinetic experiments. Based on the experimental results, a mechanism for the new enolate-isocyanate rearrangement is proposed.
引用
收藏
页码:334 / 344
页数:11
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