Exocytosis of neutrophil granule subsets and activation of prolyl isomerase 1 are required for respiratory burst priming

KR McLeish, SM Uriarte, S Tandon, TM Creed… - Journal of innate …, 2013 - karger.com
KR McLeish, SM Uriarte, S Tandon, TM Creed, J Le, RA Ward
Journal of innate immunity, 2013karger.com
This study tested the hypothesis that priming the neutrophil respiratory burst requires both
granule exocytosis and activation of the prolyl isomerase Pin1. Fusion proteins containing
the TAT cell permeability sequence and either the SNARE domain of syntaxin-4 or the N-
terminal SNARE domain of SNAP-23 were used to examine the role of granule subsets in
TNF-mediated respiratory burst priming using human neutrophils. Concentration-inhibition
curves for exocytosis of individual granule subsets and for priming of fMLF-stimulated …
Abstract
This study tested the hypothesis that priming the neutrophil respiratory burst requires both granule exocytosis and activation of the prolyl isomerase Pin1. Fusion proteins containing the TAT cell permeability sequence and either the SNARE domain of syntaxin-4 or the N-terminal SNARE domain of SNAP-23 were used to examine the role of granule subsets in TNF-mediated respiratory burst priming using human neutrophils. Concentration-inhibition curves for exocytosis of individual granule subsets and for priming of fMLF-stimulated superoxide release and phagocytosis-stimulated H 2 O 2 production were generated. Maximal inhibition of priming ranged from 72 to 88%. Linear regression lines for inhibition of priming versus inhibition of exocytosis did not differ from the line of identity for secretory vesicles and gelatinase granules, while the slopes or the y-intercepts were different from the line of identity for specific and azurophilic granules. Inhibition of Pin1 reduced priming by 56%, while exocytosis of secretory vesicles and specific granules was not affected. These findings indicate that exocytosis of secretory vesicles and gelatinase granules and activation of Pin1 are independent events required for TNF-mediated priming of neutrophil respiratory burst.
Karger