Solid‐Phase‐Supported Chemoenzymatic Synthesis and Analysis of Chondroitin Sulfate Proteoglycan Glycopeptides

糖肽 化学 硫酸化 硫酸软骨素 聚糖 固相合成 四糖 蛋白多糖 生物化学 组合化学 糖胺聚糖 多糖 糖蛋白 细胞外基质 抗生素
作者
Po‐Han Lin,Yongmei Xu,Semiha Kevser Bali,Jandi Kim,Ana Gimeno,Elijah T. Roberts,Deepak James,Nuno M. S. Almeida,Narasimhan Loganathan,Fei Fan,Angela K. Wilson,I. Jonathan Amster,Kelley W. Moremen,Jian Liu,Jesús Jiménez‐Barbero,Xuefei Huang
出处
期刊:Angewandte Chemie [Wiley]
卷期号:63 (34)
标识
DOI:10.1002/anie.202405671
摘要

Proteoglycans (PGs), consisting of glycosaminoglycans (GAGs) linked with the core protein through a tetrasaccharide linkage region, play roles in many important biological events. The chemical synthesis of PG glycopeptides is extremely challenging. In this work, the enzymes required for synthesis of chondroitin sulfate (CS) PG (CSPG) have been expressed and the suitable sequence of enzymatic reactions has been established. To expedite CSPG synthesis, the peptide acceptor was immobilized on solid phase and the glycan units were directly installed enzymatically onto the peptide. Subsequent enzymatic chain elongation and sulfation led to the successful synthesis of CSPG glycopeptides. The CS dodecasaccharide glycopeptide was the longest homogeneous CS glycopeptide synthesized to date. The enzymatic synthesis was much more efficient than the chemical synthesis of the corresponding CS glycopeptides, which could reduce the total number of synthetic steps by 80 %. The structures of the CS glycopeptides were confirmed by mass spectrometry analysis and NMR studies. In addition, the interactions between the CS glycopeptides and cathepsin G were studied. The sulfation of glycan chain was found to be important for binding with cathepsin G. This efficient chemoenzymatic strategy opens new avenues to investigate the structures and functions of PGs.

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