4.8 Article

Dipeptide-Based Carbohydrate Receptors and Polymers for Glycopeptide Enrichment and Glycan Discrimination

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 34, 页码 22084-22092

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b07863

关键词

polymer; interface; glycoproteomics; carbohydrate; enrichment

资金

  1. Major State Basic Research Development Program of China (973 Program) [2013CB933002]
  2. National High Technology Research and Development Program of China [2012AA020203]
  3. China National Funds for Distinguished Young Scientists [51325302]
  4. National Natural Science Foundation of China [51533007, 51521001, 21135005, 21275114, 51473131, 21475129]
  5. Hubei Provincial Department of Education
  6. Hubei Provincial Natural Science Foundation of China [2014CFA039]

向作者/读者索取更多资源

Glycoproteomics identifies and catalogs protein glycosylation and explores its impact on protein conformations and biofunctions. However, these studies are restricted by the bottleneck to enrich low-abundance glycopeptides from complex biosamples and the difficulties in analyzing glycan structures by mass spectrometry. Here, we report dipeptide as a simple but promising carbohydrate binding platform to tackle these problems. We build a hydropathy-index-based strategy for sequence optimization and screen out three optimal dipeptide sequences from 54 types of dipeptides. The optimized dipeptide-based homopolymers display excellent performance (e.g., selectivity up to similar to 70% for real biosamples and strong anti-interference capacity capable of resisting 1000-fold bovine serum albumin interference) glycopeptide enrichment. Meanwhile, our polymers exhibit high-efficiency chromatographic separation toward oligosaccharides with different compositions, polymerization degrees and even their linkage isomers. This brings another attractive feature that our materials can discriminate subtly variable glycan structures of glycopeptides, especially, isomeric glycosidic linkages. These features provide a solid foundation to analyze the complex glycan structures and glycosites simultaneously, which will benefit future development of glycoproteomics and glycobiology.

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