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涉及关键烯丙基硼化步骤的反式 4,5-二取代 γ-丁内酯的不对称合成。首次获得(-)-烟碱内酯 B 和(-)-galbacin。

Asymmetric synthesis of trans-4,5-disubstituted γ-butyrolactones involving a key allylboration step. First access to (-)-nicotlactone B and (-)-galbacin.

机构信息

Univ Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France.

出版信息

Org Biomol Chem. 2018 Mar 7;16(10):1672-1678. doi: 10.1039/c8ob00101d.

Abstract

An efficient asymmetric synthesis of trans-4,5-disubstituted γ-butyrolactones from aldehydes and enantioenriched γ-carbamate alkenylboronates is reported. The cornerstone of this strategy is the implementation of sequential [3,3]-allyl cyanate rearrangement/allylboration/nucleophilic addition/cyclisation reactions. Diverse γ-butyrolactones such as the flavouring compounds, (+)-trans-whiskey lactone and (+)-trans-cognac lactone, as well as an advanced intermediate towards the first synthesis of natural products, (-)-nicotlactone B and (-)-galbacin, have thus been obtained.

摘要

报道了一种从醛和对映富集的γ-氨基甲酸烯丙基硼酸酯高效不对称合成反式-4,5-二取代γ-丁内酯的方法。该策略的基石是实施顺序[3,3]-烯丙基氰酸酯重排/烯丙基硼化/亲核加成/环化反应。通过这种方法可以得到各种γ-丁内酯,如调味化合物(+)-反式威士忌内酯和(+)-反式干邑内酯,以及天然产物(-)-nicotlactone B 和(-)-galbacin 的第一个合成的关键中间体。

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