Molecular anatomy of eosinophil activation by IL5 and IL33
Mitchell, J. M.; Mabin, J. W.; Muehlbauer, L. K.; Annis, D. S.; Mathur, S. K.; Johansson, M. W.; Hebert, A. S.; Fogerty, F. J.; Coon, J. J.; Mosher, D. F.
Show abstract
IL5 and IL33 are major activating cytokines that cause circulating eosinophils to polarize, adhere, and release their granule contents. We correlated microscopic features of purified human blood eosinophils stimulated for 10 min with IL5 or IL33 with phosphoproteomic changes determined by multiplexed isobaric labeling. IL5 caused phosphorylation of sites implicated in JAK/STAT signaling and localization of pYSTAT3 to nuclear speckles whereas IL33 caused phosphorylation of sites implicated in NF{kappa}B signaling and localization of RELA to nuclear speckles. Phosphosites commonly impacted by IL5 and IL33 were involved in networks associated with cytoskeletal organization and eosinophil adhesion and migration. Many differentially regulated phosphosites were in a diverse set of large proteins--RAB44, a "large RAB" associated with crystalloid granules; NHSL2 and VIM that change localization along with the nucleus during polarization; TNFAIP3 vital for control of NF{kappa}B signaling, and SRRM2 and PML that localize, respectively, to nuclear speckles and PML bodies. Gene expression analysis demonstrated differential effects of IL5 and IL33 on IL18, CCL5, CSF1, and TNFSF14. Thus, common effects of IL5 and IL33 on the eosinophil phosphoproteome are important for positioning in tissues, degranulation, and initiation of new protein synthesis whereas specific effects on protein synthesis contribute to phenotypic heterogeneity. KEY POINTSIL33 and IL5 impact common pathways of eosinophil cytoskeletal reorganization, adhesion and migration. Each lobe of the human eosinophil nucleus has a specific anatomy poised for new onset of cytokine-specific transcription and splicing.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TRPM2 ion channels steer neutrophils towards a source of hydrogen peroxide 93%
- Antigen Presentation-Independent Reciprocal Immune Modulation by HLA-DRB1 Allelic Epitopes that Associate with Autoimmune Disease Risk or Protection 93%
- PIP-Seq identifies novel heterogeneous lung innate lymphocyte population activation after combustion product exposure 92%
Similar papers in this journal
- A Spatiotemporal Map of Co-Receptor Signaling Networks Underlying B Cell Activation 94%
- Proteomic analysis of circulating immune cells identifies novel cellular phenotypes associated with COVID-19 severity 93%
- Initiation of a ZAKa-dependent Ribotoxic Stress Response by the Innate Immunity Endoribonuclease RNase L 93%
Similar papers in this journal
- Neutrophils in severe COVID-19 are characterized by a hyperactive immature state and maintained CXCR2 expression 92%
- ICOS costimulation is indispensable for the differentiation of T follicular regulatory cells 92%
- Identification of a novel enhancer essential for Satb1 expression in TH2 cells and activated ILC2s. 92%
Similar papers in this journal
- STAT3 Serine phosphorylation is required for TLR4 metabolic reprogramming and IL-1β expression 93%
- Alt-RPL36 downregulates the PI3K-AKT-mTOR signaling pathway by interacting with TMEM24 93%
- Comprehensive proteomics analyses identify PIM kinases as key regulators of IL-15 driven activation of intestinal intraepithelial lymphocytes 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.