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Exploiting enzyme specificities in digestions of chondroitin sulfates A and C: Production of well-defined hexasaccharides

机译:利用硫酸软骨素A和C消化中的酶特异性:产生明确的六糖

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摘要

Interactions between proteins and glycosaminoglycans (GAGs) of the extracellular matrix are important to the regulation of cellular processes including growth, differentiation and migration. Understanding these processes can benefit greatly from the study of protein–GAG interactions using GAG oligosaccharides of well-defined structure. Materials for such studies have, however, been difficult to obtain because of challenges in synthetic approaches and the extreme structural heterogeneity in GAG polymers. Here, it is demonstrated that diversity in structures of oligosaccharides derived by limited enzymatic digestion of materials from natural sources can be greatly curtailed by a proper selection of combinations of source materials and digestive enzymes, a process aided by an improved understanding of the specificities of certain commercial preparations of hydrolases and lyases. Separation of well-defined oligosaccharides can then be accomplished by size-exclusion chromatography followed by strong anion-exchange chromatography. We focus here on two types of chondroitin sulfate (CS) as starting material (CS-A, and CS-C) and the use of three digestive enzymes with varying specificities (testicular hyaluronidase and bacterial chondroitinases ABC and C). Analysis using nuclear magnetic resonance and mass spectrometry focuses on isolated CS disaccharides and hexasaccharides. In all, 15 CS hexasaccharides have been isolated and characterized. These serve as useful contributions to growing libraries of well-defined GAG oligosaccharides that can be used in further biophysical assays.
机译:蛋白质与细胞外基质的糖胺聚糖(GAG)之间的相互作用对于调节细胞过程(包括生长,分化和迁移)非常重要。通过使用结构明确的GAG寡糖进行的蛋白质-GAG相互作用的研究,对这些过程的理解将大为受益。但是,由于合成方法的挑战以及GAG聚合物的极端结构异质性,难以获得用于此类研究的材料。在此表明,通过适当地选择原料和消化酶的组合可以大大减少通过有限地酶解天然来源的材料而获得的寡糖结构的多样性,这一过程可通过对某些特定蛋白的特异性的更好理解而得到帮助。水解酶和裂解酶的商业制剂。然后,可以通过尺寸排阻色谱法,然后通过强阴离子交换色谱法,完成定义明确的寡糖的分离。在这里,我们重点介绍两种类型的硫酸软骨素(CS)作为起始材料(CS-A和CS-C),以及使用三种具有不同特异性的消化酶(睾丸透明质酸酶和细菌软骨素酶ABC和C)。使用核磁共振和质谱分析的重点是分离的CS二糖和六糖。总共已经分离并鉴定了15种CS六糖。这些为不断增长的定义明确的GAG寡糖文库提供了有用的帮助,这些文库可用于进一步的生物物理分析。

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