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基于八氢呋喃并[3,2-b]吡啶母核的双环去氧野尻霉素 C-糖苷的合成、构象分析及糖苷酶抑制活性研究。

Synthesis, conformational analysis and glycosidase inhibition of bicyclic nojirimycin C-glycosides based on an octahydrofuro[3,2-b]pyridine motif.

机构信息

Université de Poitiers, IC2MP, UMR CNRS 7285, Equipe "Synthèse Organique", Groupe Glycochimie, 4 rue Michel Brunet, 86073, Poitiers Cedex 9, France.

Université de Poitiers, IC2MP, UMR CNRS 7285, Equipe "Synthèse Organique", Groupe Glycochimie, 4 rue Michel Brunet, 86073, Poitiers Cedex 9, France.

出版信息

Carbohydr Res. 2022 Jan;511:108491. doi: 10.1016/j.carres.2021.108491. Epub 2021 Dec 20.

Abstract

A set of bicyclic iminosugar C-glycosides, based on an octahydrofuro[3,2-b]pyridine motif, has been synthesized from a C-allyl iminosugar exploiting a debenzylative iodocycloetherification and an iodine nucleophilic displacement as the key steps. The halogen allowed the introduction of a range of aglycon moieties of different sizes bearing several functionalities such as alcohol, amine, amide and triazole. In these carbohydrate mimics the fused THF ring forces the piperidine to adopt a flattened C conformation according to NMR and DFT calculations studies. In their deprotected form, these bicycles were assayed on a panel of 23 glycosidases. The iminosugars displaying hydrophobic aglycon moieties proved to be superior glycosidase inhibitors, leading to a low micromolar inhibition of human lysosome β-glucosidase (compound 11; IC = 2.7 μM) and rice α-glucosidase (compound 10; IC = 7.7 μM). Finally, the loose structural analogy of these derivatives with Thiamet G, a potent OGA bicyclic inhibitor, was illustrated by the weak OGA inhibitory activity (Ki = 140 μM) of iminosugar 5.

摘要

已从 C-烯丙基亚氨基糖出发,通过脱苄基碘化环醚化和碘亲核取代反应作为关键步骤,合成了一套基于八氢呋喃并[3,2-b]吡啶基序的双环亚氨基糖 C-糖苷。卤素允许引入一系列带有不同大小和多种官能团的糖苷配基,如醇、胺、酰胺和三唑。在这些碳水化合物类似物中,稠合的四氢呋喃环迫使哌啶采用平面 C 构象,根据 NMR 和 DFT 计算研究。在去保护形式下,这些环戊烷对 23 种糖苷酶进行了检测。显示疏水性糖苷配基的亚氨基糖被证明是优越的糖苷酶抑制剂,对人溶酶体β-葡萄糖苷酶(化合物 11;IC = 2.7 μM)和水稻α-葡萄糖苷酶(化合物 10;IC = 7.7 μM)的抑制作用达到低微摩尔水平。最后,这些衍生物与噻唑烷戊二酸(一种有效的 OGA 双环抑制剂)的松散结构类似性通过亚氨基糖 5 的弱 OGA 抑制活性(Ki = 140 μM)得到说明。

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