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首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of L-Iduronic Acid Derivatives via [3.2.1] and [2.2.2] L-Iduronic Lactones from Bulk Glucose-Derived Cyanohydrin Hydrolysis: A Reversible Conformationally Switched Superdisarmed/Rearmed Lactone Route to Heparin Disaccharides
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Synthesis of L-Iduronic Acid Derivatives via [3.2.1] and [2.2.2] L-Iduronic Lactones from Bulk Glucose-Derived Cyanohydrin Hydrolysis: A Reversible Conformationally Switched Superdisarmed/Rearmed Lactone Route to Heparin Disaccharides

机译:经由[3.2.1]和[2.2.2] L-艾杜糖醛内酯从大量葡萄糖衍生的氰醇水解合成L-艾杜糖醛内酯:可逆的构象转换超解除武装/武装内酯途径合成肝素二糖

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l-Idofuranoside cyanohydrin 1 is converted on large scale into a mixture of l-IdoA methyl pyranosides and furanosides, which is converged to provide short 2-step routes to bicyclic [3.2.1] or [2.2.2] l-iduronate lactones. The former is obtained via a 100 g scale synthesis of 3-OBn l-IdoA. A two-step conversion of this mixture provides either pure anomer of the novel [2.2.2] l-iduronate thioglycoside lactones. Both [3.2.1] and [2.2.2] lactones are converted into GlcN-IdoA heparin precursor disaccharides. The [2.2.2] lactone enables a scalable 3-step route from 1 to a new type of highly disarmed O-4 iduronate thioglycoside, which is an effective acceptor with glucoazide thioglycoside donors. The resulting new iduronic [2.2.2] lactone disaccharides are readily rearmed by mild methanolysis to provide GlcN-IdoA thiophenyl disaccharide donors, intercepting their established utility for the assembly of both heparin- and heparan sulfate-like oligosaccharides. The [2.2.2] lactonization acts as a conformational switch to superdisarm iduronate components, reversible by lactone ring opening. In addition, the separated 2,4-diacetates also provide short access to all four anomeric and ring size isomers of l-iduronic acid methyl glycosides, including the first syntheses of the parent idofuranosides. X-ray structures are reported for a [2.2.2] iduronate lactone and examples of both methyl l-idopyranoside and novel methyl-l-idofuranoside systems.
机译:1-异呋喃糖苷氰醇1被大规模地转化为1-IdoA甲基吡喃糖苷和呋喃糖苷的混合物,其被汇聚以提供短的两步路线以形成双环[3.2.1]或[2.2.2] 1-异氰酸酯内酯。前者通过3-OBn 1-IdoA的100克规模合成获得。该混合物的两步转化提供了新的[2.2.2] 1-异氰酸酯硫代糖苷内酯的纯异构体。 [3.2.1]和[2.2.2]内酯均被转化为GlcN-IdoA肝素前体二糖。 [2.2.2]内酯可实现从1到新型高度缴械的O-4异氰酸酯硫代糖苷的可扩展的3步路线,这是糖叠氮化物硫代糖苷供体的有效受体。所得的新的艾杜糖醛的[2.2.2]内酯二糖很容易通过温和的甲醇水解进行重整,以提供GlcN-IdoA硫代苯基二糖供体,从而截断了它们在组装肝素和硫酸类乙酰肝素寡糖中所确立的效用。 [2.2.2]内酯化作用可作为构象转换,从而使内酯开环可逆地转变为异丁二酸酯组分的超武装。另外,分离的2,4-二乙酸酯还提供了对1-异戊糖酸甲基糖苷的所有四个异头异构体和环大小异构体的短距离访问,包括母体异呋喃糖苷的首次合成。报道了[2.2.2]乙二酸酯内酯的X射线结构,以及甲基-1-吡喃糖苷和新型甲基-1-呋喃糖苷系统的例子。

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