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首页> 外文期刊>Glycobiology. >Mild acid hydrolysis of sulfated fucans: a selective 2-desulfation reaction and an alternative approach for preparing tailored sulfated oligosaccharides.
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Mild acid hydrolysis of sulfated fucans: a selective 2-desulfation reaction and an alternative approach for preparing tailored sulfated oligosaccharides.

机译:硫酸化岩藻糖的轻度酸水解:选择性2-脱硫反应和制备定制的硫酸化寡糖的替代方法。

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摘要

Sulfated fucans from marine invertebrates have simple, linear structures, composed of repeating units of oligosaccharides. Most of these polysaccharides contain 3-linked fucosyl units, but each species of invertebrate has a specific pattern of sulfation. No specific enzyme able to cleave or to desulfate these polysaccharides has been described yet. Therefore, we employed an alternative approach, based on mild acid hydrolysis, in an attempt to obtain low molecular-weight derivatives from sulfated fucans. Surprisingly, we observed that sulfated fucans from Lytechinus variegatus and Strongylocentrotus pallidus (but not the sulfated fucans from other species) yield by mild acid hydrolysis oligosaccharides with well-defined molecular size as shown by narrow bands in polyacrylamide gel electrophoresis (PAGE). The sulfated oligosaccharides obtained by mild acid hydrolysis were purified by gel-filtration chromatography, and their structures were identified by (1)H-nuclear magnetic resonance (NMR) spectroscopy, revealing an identical chemical composition for all oligosaccharides. When we followed the acid hydrolysis by (1)H-NMR spectroscopy, we found that a selective 2-desulfation occurs in the fucans from S. pallidus and from L. variegatus. The reaction has two stages. Initially, 2-sulfate esters at specific sites are removed. Then the desulfated units are cleaved, yielding oligosaccharides with well-defined molecular size. The apparent requirement for the selective 2-desulfation is the occurrence of an exclusively 2-sulfated fucosyl unit linked to or preceded by a 4-sulfated residue. Thus, a homofucan from Strongylocentrotus franciscanus resists desulfation by mild acid hydrolysis, because it lacks the neighboring 4-sulfated unit. Overall, our results show a new approach for desulfating sulfated fucans at specific sites and obtaining tailored sulfated oligosaccharides.
机译:海洋无脊椎动物的硫酸化岩藻聚糖具有简单的线性结构,由寡糖的重复单元组成。这些多糖大多数都包含3个连接的岩藻糖基单元,但是每种无脊椎动物都有特定的硫酸化模式。尚未描述能够裂解或使这些多糖脱硫的特异性酶。因此,我们采用了基于温和酸水解的另一种方法,试图从硫酸化岩藻糖聚糖中获得低分子量衍生物。出乎意料的是,我们观察到来自中叶百日草(Lytechinus variegatus)和苍白蝇(Strytylocentrotus pallidus)的硫酸化岩藻糖(但不是其他物种的硫酸化岩藻糖)产生的温和酸水解寡糖具有确定的分子大小,如聚丙烯酰胺凝胶电泳(PAGE)中的窄带所示。通过温和酸水解获得的硫酸化寡糖通过凝胶过滤色谱法纯化,并通过(1)H-核磁共振(NMR)光谱鉴定其结构,揭示所有寡糖的化学组成相同。当我们通过(1)H-NMR光谱对酸进行水解时,我们发现来自S.pallidus和L.variegatus的fucan中发生了选择性的2-脱硫。该反应有两个阶段。最初,除去特定位置的2-硫酸酯。然后将脱硫单元裂解,得到具有明确定义的分子大小的寡糖。选择性2-脱硫的明显要求是与4-硫酸化残基连接或先于2-硫酸化岩藻糖基单元的出现。因此,来自强链梭菌的高纯葡聚糖能通过弱酸水解而抵抗脱硫,因为它缺乏相邻的4-硫酸化单元。总的来说,我们的结果显示了一种在特定位置对硫酸化岩藻糖进行脱硫并获得定制化硫酸化寡糖的新方法。

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