Endoplasmic reticulum aminopeptidases 1 (ERAP1) and 2 (ERAP2) modulate a plethora of physiological processes for the maintenance of homeostasis in different cellular subsets at both intra and extracellular level. In this frame, the extracellular supplementation of recombinant human (rh) ERAP1 and ERAP2 (300 ng/mL) was used to mimic the effect of stressor-induced secretion of ERAPs on neutrophils isolated from 5 healthy subjects. Following 3 h or 24 hexposure we observed that rhERAPs: 1) were internalized by neutrophils; 2) triggered their activation as witnessed by increased percentage of MAC1+CD66b+ expressing neutrophils, cytokine expression/release (IL-1β, IL-8, CCL2, TNFα, IFNγ, MIP-1β) and granule enzyme secretion (myeloperoxidase, Elastase); 3) increased neutrophil migration capacity; 4) increased autophagy and phagocytosis activity; 5) reduced ROS accumulation and did not influence oxygen consumption rate. Our study provides novel insights into the biological role of ERAPs, and indicates that extracellular ERAPs, contribute to shaping neutrophil homeostasis by promoting survival and tolerance in response to stress-related inflammation. This information could contribute to a better understanding of the biological bases governing immune responses, and to designing ERAP-based therapeutic protocols to control neutrophil-associated human diseases.

Impact of Endoplasmic Reticulum Aminopeptidases 1 (ERAP1) and 2 (ERAP2) on Neutrophil Cellular Functions / I. Saulle, F. Limanaqi, M. Garziano, M.L. Murno, V. Artusa, S. Strizzi, M. Giovarelli, C. Schulte, J. Aiello, M. Clerici, C. Vanetti, M. Biasin. - In: FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY. - ISSN 2296-634X. - 12:(2025 Jan 07), pp. 1-16. [10.3389/fcell.2024.1506216]

Impact of Endoplasmic Reticulum Aminopeptidases 1 (ERAP1) and 2 (ERAP2) on Neutrophil Cellular Functions

I. Saulle
Primo
;
F. Limanaqi
Secondo
;
M. Garziano;M.L. Murno;V. Artusa;S. Strizzi;M. Giovarelli;C. Schulte;M. Clerici;C. Vanetti
Penultimo
;
M. Biasin
Ultimo
2025

Abstract

Endoplasmic reticulum aminopeptidases 1 (ERAP1) and 2 (ERAP2) modulate a plethora of physiological processes for the maintenance of homeostasis in different cellular subsets at both intra and extracellular level. In this frame, the extracellular supplementation of recombinant human (rh) ERAP1 and ERAP2 (300 ng/mL) was used to mimic the effect of stressor-induced secretion of ERAPs on neutrophils isolated from 5 healthy subjects. Following 3 h or 24 hexposure we observed that rhERAPs: 1) were internalized by neutrophils; 2) triggered their activation as witnessed by increased percentage of MAC1+CD66b+ expressing neutrophils, cytokine expression/release (IL-1β, IL-8, CCL2, TNFα, IFNγ, MIP-1β) and granule enzyme secretion (myeloperoxidase, Elastase); 3) increased neutrophil migration capacity; 4) increased autophagy and phagocytosis activity; 5) reduced ROS accumulation and did not influence oxygen consumption rate. Our study provides novel insights into the biological role of ERAPs, and indicates that extracellular ERAPs, contribute to shaping neutrophil homeostasis by promoting survival and tolerance in response to stress-related inflammation. This information could contribute to a better understanding of the biological bases governing immune responses, and to designing ERAP-based therapeutic protocols to control neutrophil-associated human diseases.
ERAP1; ERAP2; neutrophils; cell migration; phagocytosis; autophagy
Settore BIOS-10/A - Biologia cellulare e applicata
Settore MEDS-02/A - Patologia generale
Settore BIOS-12/A - Anatomia umana
   ERAPs role in SAR-CoV-2 infection. Possible new molecular therapeutic targets
   FONDAZIONE CARIPLO
   2020-3593

   One Health Basic and Translational Research Actions addressing Unmet Need on Emerging Infectious Diseases (INF-ACT)
   INF-ACT
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   PE00000007
7-gen-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1128221
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