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一项以构象受限的葡萄糖衍生物为底物,对端基自由基反应中的构象-端基异构效应-立体选择性关系进行的研究。

A study on the conformation-anomeric effect-stereoselectivity relationship in anomeric radical reactions, using conformationally restricted glucose derivatives as substrates.

作者信息

Abe Hiroshi, Terauchi Masaru, Matsuda Akira, Shuto Satoshi

机构信息

Graduate School of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo 060-0812, Japan.

出版信息

J Org Chem. 2003 Sep 19;68(19):7439-47. doi: 10.1021/jo030128+.

Abstract

We previously theorized that, since the stereoselectivity of anomeric radical reactions is significantly influenced by the kinetic anomeric effect, which can be controlled by restricting the conformation of the radical intermediate, the proper conformational restriction of the pyranose ring of the substrates would therefore make highly alpha- and beta-stereoselective anomeric radical reactions possible. This theory was based on our previous results of the anomeric radical reactions with d-xylose derivatives as the substrates. We herein report the anomeric radical deuteration reactions with the conformationally restricted 1-phenylseleno-d-glucose derivatives, 2g and 3g, restricted in a (4)C(1)-conformation by an O-cyclic diketal moiety, and 4g, 5g, 6g, 7g, and 8g, restricted in a (1)C(4)-conformation by bulky O-silyl protecting groups. The radical deuterations with Bu(3)SnD, using the (4)C(1)-restricted substrates 2g and 3g, afforded the corresponding alpha-products (alpha/beta = 98:2) highly stereoselectively, whereas the (1)C(4)-restricted substrate 6g, having a trigonal (sp(2)) carbon substituent, i.e., -CHO, at the 5-position, selectively gave the beta-products (alpha/beta = 0:100). Thus, the stereoselectivity was significantly increased by the conformational restriction and was completely inverted by changing the substrate conformation from the (4)C(1)-form to the (1)C(4)-form. On the other hand, the deuterations with the (1)C(4)-restricted substrates 4g and 5g showed that the 1,5-steric effect due to the tetrahedral carbon substituent (-CH(2)OTIPS or -CH(2)OH) at the 5-axial position dominantly prevented the hydride transfer from the beta-face competing with the kinetic anomeric effect. This study suggests that, depending on the restricted conformation of the substrates to the (4)C(1)- or the (1)C(4)-form, the alpha- or beta-products would be obtained highly stereoselectively via anomeric radical reactions of hexopyranoses.

摘要

我们之前提出理论,由于异头自由基反应的立体选择性受动力学异头效应的显著影响,而动力学异头效应可通过限制自由基中间体的构象来控制,因此对底物吡喃糖环进行适当的构象限制将使高度α-和β-立体选择性的异头自由基反应成为可能。该理论基于我们之前以D-木糖衍生物为底物的异头自由基反应结果。我们在此报告了与构象受限的1-苯硒基-D-葡萄糖衍生物2g和3g的异头自由基氘代反应,2g和3g通过O-环缩酮部分限制在(4)C(1)构象中,以及4g、5g、6g、7g和8g,它们通过庞大的O-硅烷基保护基团限制在(1)C(4)构象中。使用(4)C(1)受限的底物2g和3g与Bu(3)SnD进行自由基氘代反应,以高度立体选择性的方式得到了相应的α-产物(α/β = 98:2),而在5-位具有三角(sp(2))碳取代基即-CHO的(1)C(4)受限底物6g选择性地给出了β-产物(α/β = 0:100)。因此,立体选择性通过构象限制显著提高,并且通过将底物构象从(4)C(1)形式改变为(1)C(4)形式而完全反转。另一方面,用(1)C(4)受限的底物4g和5g进行的氘代反应表明,5-轴向位置的四面体碳取代基(-CH(2)OTIPS或-CH(2)OH)引起的1,5-空间效应主要阻止了来自β-面的氢化物转移与动力学异头效应竞争。这项研究表明,根据底物限制为(4)C(1)或(1)C(4)形式的构象,通过己糖吡喃糖的异头自由基反应可以高度立体选择性地获得α-或β-产物。

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