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α-偕二羟甲基哌啶和吡咯烷亚氨基糖:合成、构象分析、糖苷酶抑制活性及分子对接研究。

α-Geminal dihydroxymethyl piperidine and pyrrolidine iminosugars: synthesis, conformational analysis, glycosidase inhibitory activity, and molecular docking studies.

机构信息

Department of Chemistry, Garware Research Centre, University of Pune, Pune, 411 007, India.

出版信息

J Org Chem. 2012 Sep 21;77(18):7873-82. doi: 10.1021/jo3009534. Epub 2012 Aug 29.

Abstract

The Jocic-Reeve and Corey-Link type reaction of dichloromethyllithium with suitably protected 5-keto-hexofuranoses followed by treatment with sodium azide and sodium borohydride reduction gave 5-azido-5-hydroxylmethyl substituted hexofuranoses 7a-c with required geminal dihydroxymethyl group. Removal of protecting groups and converting the C-1 anomeric carbon into free hemiacetal followed by intramolecular reductive aminocyclization with in situ generated C5-amino functionality afforded corresponding 5C-dihydroxymethyl piperidine iminosugars 2a-c. Alternatively, removal of protecting groups in 7b and 7c and chopping of C1-anomeric carbon gave C2-aldehyde that on intramolecular reductive aminocyclization with C5-amino gave 4C-dihydroxymethyl pyrrolidine iminosugars 1b and 1c, respectively. On the basis of the (1)H NMR studies, the conformations of 2a/2b were assigned as (4)C(1) and that of 2c as (1)C(4). The glycosidase inhibitory activities of all five iminosugars were studied with various glycosidase enzymes and compared with natural d-gluco-1-deoxynojirimycin (DNJ). All the five compounds were found to be potent inhibitors of rice α-glucosidase with K(i) and IC(50) values in the nanomolar concentration range. Iminosugars 2b and 1b were found to be more potent inhibitors than their parent iminosugar. These results were substantiated by in silico molecular docking studies.

摘要

二氯甲基锂与适当保护的 5-酮己呋喃糖的乔西奇-里夫(Jocic-Reeve)和科里-林克(Corey-Link)型反应,然后用叠氮化钠和硼氢化钠还原,得到具有所需偕二羟甲基取代的 5-叠氮-5-羟甲基取代的己呋喃糖 7a-c。脱去保护基,并将 C-1 端的端基碳原子转化为游离的半缩醛,然后用原位生成的 C5-氨基官能团进行分子内还原氨环化反应,得到相应的 5C-二羟甲基哌啶亚氨基糖 2a-c。或者,在 7b 和 7c 中脱去保护基并切断 C1-端基碳原子,得到 C2-醛,然后与 C5-氨基进行分子内还原氨环化反应,得到相应的 4C-二羟甲基吡咯烷亚氨基糖 1b 和 1c。基于(1)H NMR 研究,2a/2b 的构象被分配为(4)C(1),而 2c 的构象为(1)C(4)。用各种糖苷酶研究了所有五种亚氨基糖的糖苷酶抑制活性,并与天然 d-葡萄糖-1-脱氮诺己基(DNJ)进行了比较。所有五种化合物都被发现是水稻α-葡萄糖苷酶的有效抑制剂,其 K(i)和 IC(50)值在纳摩尔浓度范围内。亚氨基糖 2b 和 1b 被发现比其母体亚氨基糖具有更强的抑制作用。这些结果通过计算机分子对接研究得到了证实。

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