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Preparation of tricyclic enones as templates for stereocontrolled natural product synthesis

机译:制备三环烯酮作为模板以进行立体受控的天然产物合成

摘要

Small cycloalkanones with adjacent fused cyclopropane rings are excellent substrates for highly diastereoselective (α'-alkylations of enolates derived from these systems. Diastereoselectivity can be attributed to steric interactions between the cyclopropane endo methylene hydrogen and the incoming electrophile, since this atom shields the face of the enolate cis to the cyclopropane. Monoalkylation of enolates derived from bicyclo[3.1.0]hexan-2-one, bicyclo[4.1.0]heptan-2-one and bicyclo[5.1.0]octan-2-one with general electrophiles resulted in the corresponding 3-alkylated cyclopropyl ketone derivatives in synthetically useful yields. Diastereoselectivities for these systems ranged from 4:1 for six-membered cyclopropyl ketones to >20:1 for five- and seven-membered cyclopropyl ketones. Enolates derived from these 3-alkylated cyclopropyl ketones exhibited similar diastereoselectivities and yields to give the corresponding 3,3-dialkylated derivatives when alkylated with similar electrophiles. The relative stereochemistry of alkylation was determined to be trans to the cyclopropane through analysis of anisotropic shielding interactions between alkyl side chains containing phenyl rings and the endo protons on the cyclopropane carbon. This relative stereochemistry can be controlled by the sequence of alkylation, since reversal in the alkylative steps results in an inversion at the newly formed quaternary center. Synthesis of tricyclic enones was carried out through application of this (α'-alkylation methodology using electrophiles that could later be modified to give the corresponding 1,3- and 1,4-cyclopropyl diketones. Cyclization of these diketone intermediates through intramolecular aldol condensations resulted in a series of tricyclic enones whose ring junction relative stereochemistry is controlled through correct ordering of electrophiles in the alkylation steps. The result is a broadly applicable toolbox of annulated materials that can be applied towards the synthesis of natural products containing fused five- and six-membered rings with a defined stereochemistry at the ring junction.
机译:具有相邻稠合环丙烷环的小的环烷酮是高度非对映选择性(衍生自这些系统的烯醇化物的α'-烷基化)的优良底物。非对映选择性可归因于环丙烷内亚甲基氢与传入的亲电体之间的空间相互作用,因为该原子可遮蔽双环[3.1.0]己-2-酮,双环[4.1.0]庚-2-酮和双环[5.1.0]辛-2-酮衍生的烯醇与普通亲电试剂的单烷基化生成相应的3-烷基化环丙基酮衍生物,其合成的收率范围从六元环丙基酮的4:1到五元和七元环丙基酮的> 20:1不等。 -烷基化的环丙基酮表现出相似的非对映选择性,并且当用相似的电离烷基化时得到相应的3,3-二烷基化衍生物。 les。通过分析含苯环的烷基侧链与环丙烷碳上的内质子之间的各向异性屏蔽相互作用,确定烷基化的相对立体化学可逆转成环丙烷。这种相对的立体化学可以通过烷基化的顺序来控制,因为在烷基化步骤中的逆转会导致在新形成的四元中心发生反转。三环烯酮的合成是通过应用亲电子试剂(通过亲子试剂的α'-烷基化方法进行的,随后可对其进行修饰以得到相应的1,3-和1,4-环丙基二酮)而实现的。这些二酮中间体通过分子内醛醇缩合环化在一系列三环烯酮中,其环连接的相对立体化学是通过烷基化步骤中亲电体的正确排序来控制的,其结果是广泛使用的环空材料工具箱,可用于合成含五键和六键稠合天然产物在环结处具有确定的立体化学的二元环。

著录项

  • 作者

    Baron James Andrew 1971-;

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  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 en_US
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