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Glycoconjugate Oxime Formation Catalyzed at Neutral pH: Mechanistic Insights and Applications of 1,4-Diaminobenzene as a Superior Catalyst for Complex Carbohydrates

机译:糖醌肟形成在中性pH下催化:1,4-二氨基的机械洞察和应用作为复合碳水化合物的优质催化剂

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摘要

The reaction of unprotected carbohydrates with aminooxy reagents to provide oximes is a key method for the construction of glycoconjugates. Aniline and derivatives serve as organocatalysts for the formation of oximes from simple aldehydes, and we have previously reported that aniline also catalyzes the formation of oximes from the more complex aldehydes, carbohydrates. Here, we present a comprehensive study of the effect of aniline analogues on the formation of carbohydrate oximes and related glycoconjugates depending on organocatalyst structure, pH, nucleophile, and carbohydrate, covering more than 150 different reaction conditions. The observed superiority of the 1,4-diaminobenzene (PDA) catalyst at neutral pH is rationalized by NMR analyses and DFT studies of reaction intermediates. Carbohydrate oxime formation at pH 7 is demonstrated by the formation of a bioactive glycoconjugate from a labile, decorated octasaccharide originating from exopolysaccharides of the soil bacterium Mesorhizobium loti. This study of glycoconjugate formation includes the first direct comparison of aniline-catalyzed reaction rates and equilibrium constants for different classes of nucleophiles, including primary oxyamines, secondary N-alkyl oxyamines, as well as aryl and arylsulfonyl hydrazides. We identified 1,4-diaminobenzene as a superior catalyst for the construction of oxime-linked glycoconjugates under mild conditions.
机译:未受保护的碳水化合物与氨基氧基试剂的反应,以提供肟是构建糖缀合物的关键方法。苯胺和衍生物作为从简单醛形成的氧化肟的有机催化剂,我们先前据报道,苯胺还催化来自更复杂的醛,碳水化合物的氧化肟的形成。在这里,我们综合研究了苯胺类似物对碳水化合物肟和相关糖缀合的影响,取决于有机催化剂结构,pH,亲核试剂和碳水化合物,覆盖超过150种不同的反应条件。通过NMR分析和反应中间体的DFT研究,在中性pH下观察到的1,4-二氨基苯(PDA)催化剂的优越性是合理的。通过从不稳定的,装饰的十六糖中形成来自源于土壤菌落中丘脑Loti的外核的生物活性糖缀合物,证明了pH7的碳水化合物肟形成。该研究的糖醌形成的研究包括用于不同类亲核试剂的苯胺催化的反应速率和平衡常数的首次直接比较,包括伯羟肟胺,二次N-烷基氧基肟胺以及芳基和芳基磺酰肼。我们将1,4-二氨基苯作为优异催化剂鉴定为在温和条件下构建肟连接的糖凝集糖缀合物。

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  • 来源
    《Bioconjugate Chemistry》 |2018年第4期|共12页
  • 作者单位

    Univ Copenhagen Fac Sci Dept Chem Thorvaldsensvej 40 DK-1871 Frederiksberg C Denmark;

    Univ Copenhagen Fac Sci Dept Chem Thorvaldsensvej 40 DK-1871 Frederiksberg C Denmark;

    Univ Copenhagen Fac Sci Dept Chem Thorvaldsensvej 40 DK-1871 Frederiksberg C Denmark;

    Univ Copenhagen Fac Sci Dept Chem Thorvaldsensvej 40 DK-1871 Frederiksberg C Denmark;

    Univ Copenhagen Fac Sci Dept Chem Thorvaldsensvej 40 DK-1871 Frederiksberg C Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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