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2,6-二取代和2,2,6-三取代二氢吡喃酮的高度对映选择性合成:(R)-(+)-虫草酮及其类似物的一步合成法

Highly enantioselective synthesis of 2,6-disubstituted and 2,2,6-trisubstituted dihydropyrones: a one-step synthesis of (R)-(+)-hepialone and its analogues.

作者信息

Yang Weiqing, Shang Deju, Liu Yanling, Du Ying, Feng Xiaoming

机构信息

Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu 610064, China.

出版信息

J Org Chem. 2005 Oct 14;70(21):8533-7. doi: 10.1021/jo051458s.

Abstract

An efficient enantioselective approach to chiral dihydropyrones has been developed by the hetero-Diels-Alder (HDA) reactions of (E)-4-methoxy-2-trimethylsiloxy-penta-1,3-diene (diene 1) with aldehydes and pyruvates. It has been found that the readily accessible (R)-BINOL-Ti(OiPr)(4) (1.1:1) complex was a very effective catalyst for this reaction. Aromatic, heteroaromatic, conjugated, and aliphatic aldehydes afforded the corresponding products in moderate to high isolated yields (up to 99%) with excellent enantioselectivities (up to 99% ee). The first example of highly enantioselective synthesis of 2,2,6-trisubstituted dihydropyrones by the catalytic reaction of diene 1 with pyruvates was reported. The isolated intermediates indicated that this asymmetric HDA reaction proceeded in a Mukaiyama aldol pathway. On the basis of the absolute configurations of the products, a possible mechanism was proposed. Moreover, the catalytic system could be used to synthesize a series of enantioenriched beta-hydroxyketones 4. Finally, this methodology was successfully applied for the one-step synthesis of the important natural product (R)-(+)-Hepialone with 88% isolated yield and 94% enantioselectivity.

摘要

通过(E)-4-甲氧基-2-三甲基硅氧基-1,3-戊二烯(二烯1)与醛和丙酮酸的杂Diels-Alder(HDA)反应,开发了一种高效的对映选择性合成手性二氢吡喃酮的方法。已发现易于获得的(R)-联萘酚-Ti(OiPr)(4)(1.1:1)配合物是该反应非常有效的催化剂。芳香醛、杂芳香醛、共轭醛和脂肪醛以中等至高的分离产率(高达99%)和优异的对映选择性(高达99%ee)得到相应产物。报道了通过二烯1与丙酮酸的催化反应高度对映选择性合成2,2,6-三取代二氢吡喃酮的首个实例。分离得到的中间体表明该不对称HDA反应按Mukaiyama羟醛途径进行。根据产物的绝对构型,提出了一种可能的机理。此外,该催化体系可用于合成一系列对映体富集的β-羟基酮4。最后,该方法成功应用于重要天然产物(R)-(+)-虫草酮的一步合成,分离产率为88%,对映选择性为94%。

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