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Hyper-truncated Asn355-and Asn391-glycans modulate the activity of neutrophil granule myeloperoxidase

Authors :
Tjondro, HC
Ugonotti, J
Kawahara, R
Chatterjee, S
Loke, I
Chen, S
Soltermann, F
Hinneburg, H
Parker, BL
Venkatakrishnan, V
Dieckmann, R
Grant, OC
Bylund, J
Rodger, A
Woods, RJ
Karlsson-Bengtsson, A
Struwe, WB
Thaysen-Andersen, M
Tjondro, HC
Ugonotti, J
Kawahara, R
Chatterjee, S
Loke, I
Chen, S
Soltermann, F
Hinneburg, H
Parker, BL
Venkatakrishnan, V
Dieckmann, R
Grant, OC
Bylund, J
Rodger, A
Woods, RJ
Karlsson-Bengtsson, A
Struwe, WB
Thaysen-Andersen, M
Publication Year :
2021

Abstract

Myeloperoxidase (MPO) plays essential roles in neutrophil-mediated immunity via the generation of reactive oxidation products. Complex carbohydrates decorate MPO at discrete sites, but their functional relevance remains elusive. To this end, we have characterised the structure-biosynthesis-activity relationship of neutrophil MPO (nMPO). Mass spectrometry demonstrated that nMPO carries both characteristic under-processed and hyper-truncated glycans. Occlusion of the Asn355/Asn391-glycosylation sites and the Asn323-/Asn483-glycans, located in the MPO dimerisation zone, was found to affect the local glycan processing, thereby providing a molecular basis of the site-specific nMPO glycosylation. Native mass spectrometry, mass photometry and glycopeptide profiling revealed significant molecular complexity of diprotomeric nMPO arising from heterogeneous glycosylation, oxidation, chlorination and polypeptide truncation variants and a previously unreported low-abundance monoprotomer. Longitudinal profiling of maturing, mature, granule-separated and pathogen-stimulated neutrophils demonstrated that nMPO is dynamically expressed during granulopoiesis, unevenly distributed across granules and degranulated upon activation. We also show that proMPO-to-MPO maturation occurs during early/mid-stage granulopoiesis. While similar global MPO glycosylation was observed across conditions, the conserved Asn355-/Asn391-sites displayed elevated glycan hyper-truncation, which correlated with higher enzyme activities of MPO in distinct granule populations. Enzymatic trimming of the Asn355-/Asn391-glycans recapitulated the activity gain and showed that nMPO carrying hyper-truncated glycans at these positions exhibits increased thermal stability, polypeptide accessibility and ceruloplasmin-mediated inhibition potential relative to native nMPO. Finally, molecular modelling revealed that hyper-truncated Asn355-glycans positioned in the MPO-ceruloplasmin interface are critical for uninterrupted in

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1315692664
Document Type :
Electronic Resource