Wright Peter M, Myers Andrew G
Department of Chemistry & Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, United States.
Tetrahedron. 2011 Dec 23;67(51):9853-9869. doi: 10.1016/j.tet.2011.09.143.
Here we describe chemical innovations that enable the preparation of fully synthetic tetracyclines containing an all-carbon quaternary, stereogenic center at position C5a, a structurally novel class of compounds in this important family of therapeutic agents. In the key transformation and an important extension of the powerful Michael-Claisen cyclization (AB plus D) approach to the construction of fully synthetic tetracyclines, we show that the six-membered C ring comprising a C5a quaternary carbon center can be assembled by highly stereocontrolled coupling reactions of β-substituted AB enones and o-toluate ester anion D-ring precursors. Novel and versatile β-functionalization reaction sequences employing tris(methylthio)methyllithium and 2-lithio-1,3-dithiane have been developed to transform the AB enone 1 (the key precursor to fully synthetic tetracyclines) into a diverse range of β-substituted AB enone products, including a highly efficient, single-operation method for the synthesis of a β-methyl ester-substituted AB enone. A C5a-C11a-bridged cyclopropane tetracycline precursor was found to undergo efficient and regioselective ring-opening reactions with a range of nucleophiles in the presence of magnesium bromide, thus providing another avenue for the preparation of fully synthetic tetracyclines containing an all-carbon quaternary center at position C5a. Two compounds prepared from the bridged cyclopropane intermediate served as (further) diversifiable branch-points, allowing maximally expedient synthesis of C5a-substituted tetracyclines by final-step diversification.
在此,我们描述了一些化学创新方法,这些方法能够制备出全合成四环素,其在C5a位含有一个全碳季碳手性中心,这是这类重要治疗药物中一类结构新颖的化合物。在构建全合成四环素的关键转化步骤以及强大的迈克尔 - 克莱森环化(AB加D)方法的重要扩展中,我们表明,包含C5a季碳中心的六元C环可通过β-取代的AB烯酮与邻甲苯酸酯阴离子D环前体的高度立体控制偶联反应来组装。已经开发出使用三(甲硫基)甲基锂和2-锂代-1,3-二硫烷的新型通用β-官能化反应序列,将AB烯酮1(全合成四环素的关键前体)转化为多种β-取代的AB烯酮产物,包括一种高效的单步合成β-甲酯取代的AB烯酮的方法。发现一种C5a-C11a桥连的环丙烷四环素前体在溴化镁存在下能与一系列亲核试剂发生高效且区域选择性的开环反应,从而为制备在C5a位含有全碳季中心的全合成四环素提供了另一条途径。由桥连环丙烷中间体制备的两种化合物作为(进一步)可多样化的分支点,通过最后一步多样化实现了C5a取代四环素的最便捷合成。