Neutrophils display distinct post-translational modifications in response to varied pathological stimuli

[Display omitted] •Neutrophils exhibit phenotypical and functional heterogeneity in both homeostatic and pathological conditions.•T2D is associated with significant neutrophil dysfunction and reduces responses to infections and thrombotic events.•PTM of neutrophils proteins induced by varied patholo...

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Veröffentlicht in:International immunopharmacology 2024-05, Vol.132, p.111950-111950, Article 111950
Hauptverfasser: Thimmappa, Pooja Yedehalli, Nair, Aswathy S, D'silva, Sian, Aravind, Anjana, Mallya, Sandeep, Soman, Sreelakshmi Pathappillil, Guruprasad, Kanive Parashiva, Shastry, Shamee, Raju, Rajesh, Prasad, Thottethodi Subrahmanya Keshava, Joshi, Manjunath B
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Sprache:eng
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Zusammenfassung:[Display omitted] •Neutrophils exhibit phenotypical and functional heterogeneity in both homeostatic and pathological conditions.•T2D is associated with significant neutrophil dysfunction and reduces responses to infections and thrombotic events.•PTM of neutrophils proteins induced by varied pathological stimuli activates distinct signaling pathways.•Neutrophil PTM patterns in response to varied pathological stimuli may serve as a resource to design therapeutic strategies. Neutrophils play a vital role in the innate immunity by perform effector functions through phagocytosis, degranulation, and forming extracellular traps. However, over-functioning of neutrophils has been associated with sterile inflammation such as Type 2 Diabetes, atherosclerosis, cancer and autoimmune disorders. Neutrophils exhibiting phenotypical and functional heterogeneity in both homeostatic and pathological conditions suggests distinct signaling pathways are activated in disease-specific stimuli and alter neutrophil functions. Hence, we examined mass spectrometry based post-translational modifications (PTM) of neutrophil proteins in response to pathologically significant stimuli, including high glucose, homocysteine and bacterial lipopolysaccharides representing diabetes-indicator, an activator of thrombosis and pathogen-associated molecule, respectively. Our data revealed that these aforesaid stimulators differentially deamidate, citrullinate, acetylate and methylate neutrophil proteins and align to distinct biological functions associated with degranulation, platelet activation, innate immune responses and metabolic alterations. The PTM patterns in response to high glucose showed an association with neutrophils extracellular traps (NETs) formation, homocysteine induced proteins PTM associated with signaling of systemic lupus erythematosus and lipopolysaccharides induced PTMs were involved in pathways related to cardiomyopathies. Our study provides novel insights into neutrophil PTM patterns and functions in response to varied pathological stimuli, which may serve as a resource to design therapeutic strategies for the management of neutrophil-centred diseases.
ISSN:1567-5769
1878-1705
DOI:10.1016/j.intimp.2024.111950