| Literature DB >> 32193533 |
Alhumaidi Alabbas1,2,3, Umesh R Desai1,2.
Abstract
Although structurally diverse, longer glycosaminoglycan (GAG) oligosaccharides are critical to understand human biology, few are available. The major bottleneck has been the predominant production of oligosaccharides, primarily disaccharides, upon enzymatic depolymerization of GAGs. In this work, we employ enzyme immobilization to prepare hexasaccharide and longer sequences of chondroitin sulfate in good yields with reasonable homogeneity. Immobilized chondroitinase ABC displayed good efficiency, robust operational pH range, broad thermal stability, high recycle ability and excellent distribution of products in comparison to the free enzyme. Diverse sequences could be chromatographically resolved into well-defined peaks and characterized using LC-MS. Enzyme immobilization technology could enable easier access to diverse longer GAG sequences.Entities:
Keywords: chondroitinase; glycosaminoglycans; immobilization; oligosaccharides
Year: 2020 PMID: 32193533 PMCID: PMC7526740 DOI: 10.1093/glycob/cwaa027
Source DB: PubMed Journal: Glycobiology ISSN: 0959-6658 Impact factor: 4.313