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Meta-heterogeneity: Evaluating and Describing the Diversity in Glycosylation Between Sites on the Same Glycoprotein

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MOLECULAR & CELLULAR PROTEOMICS
卷 20, 期 -, 页码 -

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ELSEVIER
DOI: 10.1074/mcp.R120.002093

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资金

  1. Netherlands Organization for Scientific Research (NWO) through a TOP-Punt Grant [718.015.003]
  2. European Union [668036]
  3. Netherlands Proteomics Center, through the X-omics Road Map program [184.034.019]
  4. EU Horizon 2020 program INFRAIA project Epic-XS [823839]
  5. NWO Veni project [VI.Veni.192.058]

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Mass spectrometry-based glycoproteomics has made remarkable advancements in recent years, transforming from a niche application focused on isolated glycoproteins to a mature technology capable of analyzing thousands of intact glycopeptides at once. In addition to driving numerous biological discoveries, there is a growing focus on global protein glycosylation and the relationship between multiple glycosylation sites on the same protein.
Mass spectrometry-based glycoproteomics has gone through some incredible developments over the last few years. Technological advances in glycopeptide enrichment, fragmentation methods, and data analysis work-flows have enabled the transition of glycoproteomics from a niche application, mainly focused on the characterization of isolated glycoproteins, to a mature technology capable of profiling thousands of intact glycopeptides at once. In addition to numerous biological discoveries catalyzed by the technology, we are also observing an increase in studies focusing on global protein glycosylation and the relationship between multiple glycosylation sites on the same protein. It has become apparent that just describing protein glycosylation in terms of micro and macro-heterogeneity, respectively, the variation and occupancy of glycans at a given site, is not sufficient to describe the observed interactions between sites. In this perspective we propose a new term, meta-heterogeneity, to describe a higher level of glycan regulation: the variation in glycosylation across multiple sites of a given protein. We provide literature examples of extensive meta-heterogeneity on relevant proteins such as antibodies, erythropoietin, myeloperoxidase, and a number of serum and plasma proteins. Furthermore, we postulate on the possible biological reasons and causes behind the intriguing meta-heterogeneity observed in glycoproteins.

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