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以乙烯基硅烷基连接基的自由基环化反应为关键步骤合成作为肌醇-1,4,5-三磷酸(IP₃)受体配体的3,7-脱水-D-甘油-D-艾杜醇1,5,6-三磷酸酯。利用吡喃糖环上相邻大位阻保护基之间的空间排斥的构象限制策略。

Synthesis of 3,7-anhydro-D-glycero-D-ido-octitol 1,5,6-trisphosphate as an IP(3) receptor ligand using a radical cyclization reaction with a vinylsilyl tether as the key step. Conformational restriction strategy using steric repulsion between adjacent bulky protecting groups on a pyranose ring.

作者信息

Shuto S, Yahiro Y, Ichikawa S, Matsuda A

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. 2000 Sep 8;65(18):5547-57. doi: 10.1021/jo0002339.

DOI:10.1021/jo0002339
PMID:10970293
Abstract

3,7-Anhydro-D-glycero-D-ido-octitol 1,5,6-trisphosphate (5) was designed as a novel IP(3)-receptor ligand having a C-glycosidic structure and was synthesized via a radical cyclization reaction with a temporary connecting vinylsilyl tether as the key step. The phenyl 2-O-dimethylvinylsilyl-3,4, 6-tri-O-benzyl-1-seleno-beta-D-glucopyranoside (7), in the usual (4)C(1)-conformation, was successively treated with Bu(3)SnH/AIBN and under Tamao oxidation conditions to give a mixture of five C-glycosidic products. On the other hand, similar successive treatment of the corresponding 3,4-di-O-TBS-protected substrates 13 and 24, which were in an unusual (1)C(4)-conformaion due to the steric repulsion between the bulky silyl protecting groups, gave the desired 1alpha-C-glycosides 18 and 25, respectively, as the major products. Thus, the course of the radical cyclization was effectively controlled by a change in the conformation of the pyranose ring into a (1)C(4)-form due to steric repulsion between the adjacent bulky TBS-protecting groups at the 3- and 4-hydroxyl groups. From 25, the target 5 was synthesized via phosphorylation of the hydroxyls by the phosphoramidite method. The C-glycoside trisphosphate 5 has significant binding affinity for IP(3) receptor of calf cerebella.

摘要

3,7-脱水-D-甘油-D-艾杜醇-1,5,6-三磷酸酯(5)被设计为一种具有C-糖苷结构的新型肌醇三磷酸(IP(3))受体配体,并通过以临时连接的乙烯基硅烷基链为关键步骤的自由基环化反应合成。苯基2-O-二甲基乙烯基硅烷基-3,4,6-三-O-苄基-1-硒代-β-D-吡喃葡萄糖苷(7)处于通常的(4)C(1)构象,依次用Bu(3)SnH/AIBN处理并在玉尾氧化条件下反应,得到五种C-糖苷产物的混合物。另一方面,对相应的3,4-二-O-TBS保护的底物13和24进行类似的连续处理,由于庞大的硅烷基保护基团之间的空间排斥,它们处于不寻常的(1)C(4)构象,分别得到所需的1α-C-糖苷18和25作为主要产物。因此,由于3-和4-羟基处相邻庞大的TBS保护基团之间的空间排斥,吡喃糖环构象转变为(1)C(4)形式有效地控制了自由基环化的过程。由25通过亚磷酰胺法对羟基进行磷酸化合成了目标化合物5。C-糖苷三磷酸酯5对小牛小脑的IP(3)受体具有显著的结合亲和力。

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