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用于合成Boc保护的4-烷基脯氨醇和脯氨酸的不对称氢化反应。

Asymmetric hydrogenations for the synthesis of Boc-protected 4-alkylprolinols and prolines.

作者信息

Del Valle Juan R, Goodman Murray

机构信息

Department of Chemistry and Biochemistry, University of California-San Diego, La Jolla 92093-0343, USA.

出版信息

J Org Chem. 2003 May 16;68(10):3923-31. doi: 10.1021/jo034214l.

Abstract

The utility of 4-substituted prolinols and their corresponding prolines in peptides, peptidomimetics, and natural products has motivated researchers to find new and efficient routes for their preparation. Herein, we report a general approach to the synthesis of Boc-protected 4-alkylprolinols and prolines via a divergent asymmetric hydrogenation strategy. Intermediate exocyclic olefins were prepared by Wittig-type reactions with ketone 6 and subjected to hydroxyl and sterically directed reductions. The Crabtree catalyst (Ir[COD]PyPCy(3)PF(6)) proved to be highly effective in diastereoselective hydrogenations to give trans-substituted pyrrolidines (9). Good facial selectivities were also observed in heterogeneous hydrogenations with Raney-nickel to obtain cis-substituted pyrrolidines (11). Employing this strategy, we describe the synthesis of novel prolinol and proline-based building blocks for incorporation into biologically relevant peptidomimetics.

摘要

4-取代脯氨醇及其相应的脯氨酸在肽、拟肽和天然产物中的应用促使研究人员寻找新的高效合成路线。在此,我们报道了一种通过发散不对称氢化策略合成Boc保护的4-烷基脯氨醇和脯氨酸的通用方法。通过与酮6进行Wittig型反应制备中间体环外烯烃,并进行羟基和空间定向还原。Crabtree催化剂(Ir[COD]PyPCy(3)PF(6))在非对映选择性氢化反应中被证明非常有效,可得到反式取代的吡咯烷(9)。在用阮内镍进行的多相氢化反应中也观察到了良好的面选择性,从而得到顺式取代的吡咯烷(11)。采用这种策略,我们描述了用于掺入具有生物学相关性的拟肽中的新型脯氨醇和基于脯氨酸的构建块的合成。

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