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gem-二氟碳杂双糖:恢复端基非对映效应。

gem-Difluorocarbadisaccharides: restoring the exo-anomeric effect.

机构信息

Sorbonne Universités, UPMC Univ Paris 06, Institut Universitaire de France, UMR CNRS 8232, IPCM, 4, place Jussieu, 75005 Paris (France).

出版信息

Angew Chem Int Ed Engl. 2014 Sep 1;53(36):9597-602. doi: 10.1002/anie.201405008. Epub 2014 Jul 15.

Abstract

Molecular mimicry is an essential part of the development of drugs and molecular probes. In the chemical glycobiology field, although many glycomimetics have been developed in the past years, it has been considered that many failures in their use are related to the lack of the anomeric effects in these analogues. Additionally, the origin of the anomeric effects is still the subject of virulent scientific debates. Herein, by combining chemical synthesis, NMR methods, and theoretical calculations, we show that it is possible to restore the anomeric effect for an acetal when replacing one of the oxygen atoms by a CF2 group. This result provides key findings in chemical sciences. On the one hand, it strongly suggests the key relevance of the stereoelectronic component of the anomeric effect. On the other hand, the CF2 analogue adopts the natural glycoside conformation, which might provide new avenues for sugar-based drug design.

摘要

分子模拟是药物和分子探针开发的重要组成部分。在化学糖生物学领域,尽管过去几年已经开发出许多糖类似物,但人们认为它们在使用中的许多失败都与这些类似物中缺乏端基效应有关。此外,端基效应的起源仍然是激烈科学争论的主题。在此,我们通过结合化学合成、NMR 方法和理论计算,表明当用 CF2 基团取代其中一个氧原子时,缩醛可以恢复端基效应。这一结果为化学科学提供了关键的发现。一方面,它强烈表明了端基效应的立体电子成分的关键相关性。另一方面,CF2 类似物采用了天然糖苷构象,这可能为基于糖的药物设计提供新途径。

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