Synthesis of Non-NaturalO-Glycosylamino Acids Derived fromn-Pentenyl Glycosides; Model Studies and Proof of Principle for Glycopeptide Synthesis

Jennifer R. Allen, S. Danishefsky
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引用次数: 4

Abstract

Model studies on the transformation of the olefinic unit contained in n-pentenyl glycosides (NPGs) to glycoamino acids is described. The methodology involves a Horner-Emmons olefination with a protected glycine derived phosphonate, followed by asymmetric hydrogenation using Du-PHOS catalyst system. A variety of protecting group schemes have been investigated and their stereoselectivity in the hydrogenation reaction determined. With N-Boc and C-TSE ester protection, the diastereoselectivity in the reaction was measured by 1H NMR analysis with “racemic” product as a comparison. These modified glycoamino acids are also useful for peptide synthesis. The methodology appears to be general and was extended to include the synthesis a glycoamino acid containing the complex hexasaccharide Globo-H.
由正戊基糖苷衍生的非天然糖氨基酸的合成糖肽合成的模型研究和原理证明
描述了正戊基糖苷(NPGs)中含烯烃单元转化为糖氨基酸的模型研究。该方法包括用受保护的甘氨酸衍生膦酸盐进行Horner-Emmons烯化,然后使用duphos催化剂系统进行不对称氢化。研究了多种保护基团方案,并测定了它们在加氢反应中的立体选择性。在N-Boc和C-TSE酯保护下,以外消旋产物为对照,通过1H NMR分析测定了反应的非对映选择性。这些修饰的糖氨基酸在肽合成中也很有用。该方法似乎是一般的,并被扩展到包括一个糖氨基酸的合成含有六糖复合物Globo-H。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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