Glycoproteome remodelling and granule-specific N-glycosylation accompany neutrophil granulopoiesis
Kawahara, R.; Ugonotti, J.; Chatterjee, S.; Tjondro, H. C.; Loke, I.; Parker, B. L.; Venkatakrishnan, V.; Dieckmann, R.; Sumer-Bayraktar, Z.; Karlsson-Bengtsson, A.; Bylund, J.; Thaysen-Andersen, M.
Show abstract
Neutrophils store microbicidal glycoproteins in cytosolic granules to fight intruding pathogens, but their granule distribution and formation mechanism(s) during granulopoiesis remain unmapped. Herein, we perform comprehensive spatiotemporal N-glycoproteome profiling of isolated granule populations from blood-derived neutrophils and during their maturation from bone marrow-derived progenitors using glycomics-assisted glycoproteomics. Interestingly, the granules of resting neutrophils exhibited distinctive glycophenotypes including, most strikingly, peculiar highly truncated N-glycosylation in the azurophilic granules. Excitingly, proteomics and transcriptomics data from discrete myeloid progenitor stages revealed that profound glycoproteome remodelling underpins the promyelocytic-to-metamyelocyte transition and that remodelling is driven primarily by changes in protein expression and less by the glycosylation machinery. Notable exceptions were the oligosaccharyltransferase subunits responsible for initiation of N-glycoprotein biosynthesis that were strongly expressed in early myeloid progenitors correlating with high glycosylation efficiencies of the azurophilic granule proteins. Our study provides spatiotemporal insights into the complex neutrophil N-glycoproteome featuring an intriguing granule-specific N-glycosylation formed by dynamic remodelling during myeloid progenitor-to-neutrophil maturation. Key pointsO_LISystems glycobiology reveals that profound N-glycoproteome remodelling accompanies early neutrophil granulopoiesis C_LIO_LIPrecision glycoproteomics produces detailed cartography of neutrophils that exhibit site-, protein- and granule-specific N-glycosylation C_LI
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