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Stereoselective oxygenation of a double bond: Design and synthesis of azasugar inhibitors of glucoconjugate processing enzymes.

机译:双键的立体选择性氧合:糖缀合物加工酶的氮杂糖抑制剂的设计和合成。

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摘要

A novel methodology for the synthesis of amino sugars and aza-sugars, important inhibitors of glycosidases, is described. This is accomplished via the intermediacy of N-diphenylmethylene-protected a-amino esters. This methodology can be divided into three major phases. First, the reduction-alkenylation reaction with DIBAL-TRIBAL and oxygenated alkenyllithium nucleophiles provides unsaturated 1,2-amino alcohols with excellent threo-selectivity (>20: 1). Second, optimization of catalytic osmylation conditions with regards to chemical yield, stereoselectivity, and osmium content is described. A mixture of 1.2 mol% of osmium tetroxide in the presence of 3 eq. of potassium ferricyanide (K₃Fe(CN)₆) as an oxidant, 3 eq. of K₂CO₃ and 3 mol% of (DHQ)₂PHAL chiral ligand represents optimized dihydroxylation conditions. Depending upon the substrate, good to excellent antiselectivities are observed. The separation of diastereomeric mixtures of protected amino tetrols is accomplished by flash chromatography on silica gel. Thus, four contiguous chiral centers are established efficiently in two steps. The third stage involves manipulation of the protecting groups and subsequent cyclization. Deprotection of the silyl protecting group in the presence of acyl groups is complicated by migration. The cyclization is accomplished via the reductive amination of acyclic amino aldehydes with NaBH3CN. D-N-methyl-fucosamine is prepared from protected L-serine. Depending on the order of osmylation and cyclization steps, this methodology provides either Lazafucose or L-azagulose from protected L-alanine in 8 steps. Furthermore, 1-cyano-L-azafucose is prepared via treatment of acyclic amino aldehydes with HCN (Strecker reaction).
机译:描述了一种新的合成方法,用于合成氨基糖和氮杂糖(糖苷酶的重要抑制剂)。这是通过N-二苯基亚甲基保护的α-氨基酯的中间体来完成的。该方法可以分为三个主要阶段。首先,用DIBAL-TRIBAL和氧化的烯基锂亲核试剂进行的还原烯基化反应可提供具有出色苏氨酸选择性(> 20:1)的不饱和1,2-氨基醇。其次,描述了关于化学收率,立体选择性和含量的催化渗透化条件的优化。在3当量的存在下1.2摩尔%的四氧化的混合物。铁氰化钾(K₃Fe(CN)₆)作为氧化剂,3 eq。 K 2 CO 3和3mol%的(DHQ)2 PHAL手性配体代表最佳的二羟基化条件。取决于底物,观察到良好至优异的抗选择性。受保护的氨基四元醇的非对映异构体混合物的分离通过硅胶快速色谱法完成。因此,分两个步骤有效地建立了四个连续的手性中心。第三阶段涉及操纵保护基和随后的环化。在酰基存在下,甲硅烷基保护基的脱保护由于迁移而变得复杂。通过用NaBH3CN对无环氨基醛进行还原胺化来完成环化。 D-N-甲基岩藻糖胺由受保护的L-丝氨酸制备。根据渗透作用和环化步骤的顺序,此方法可通过8个步骤从受保护的L-丙氨酸中提供Lazafucose或L-azagulose。此外,通过用HCN(Strecker反应)处理无环氨基醛来制备1-氰基-L-氮杂蔗糖。

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  • 作者

    Sames Dalibor.;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 en
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