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Activity of granulomatosis with polyangiitis and its correlation with mTOR phosphoproteomics in neutrophils
Marcin Surmiak1, Katarzyna Wawrzycka-Adamczyk2, Joanna Kosałka-Węgiel2
1Department of Internal Medicine, Jagiellonian University Medical College, Krakow, Poland.
Introduction:
Granulomatosis with polyangiitis (GPA) is a small vessel vasculitis with a complex pathomechanism. Organ damage in GPA is also mediated by extracellular trap formation (NETosis). We analyzed the functional status of phosphoproteins modulating NETosis in neutrophils by the mammalian target of rapamycin (mTOR) pathway in GPA along with NETosis biomarkers.
Methods:
Phosphoproteins levels measured in isolated neutrophils from 42 patients with GPA (exacerbation n=21; remission n=21) and 21 healthy controls were compared to serum biomarkers of the disease.
Results:
Neutrophils in active disease manifested lowered levels of phosphorylated mTOR(Ser2448), PTEN(Ser380) and ULK1(Ser555), whereas phosphorylated GSK-3α/β(Ser21/Ser9) was elevated. Exacerbation of GPA was characterized by elevated neutrophil dsDNA in serum, circulating mitochondrial DNA, and DNA-MPO complexes. A significant negative correlation between mTOR or PTEN phosphoproteins and biomarkers of GPA activity was also present, reflecting the clinical activity score of GPA. Positive correlations between phosphorylated GSK-3 α/β and circulating mtDNA, DNA-MPO complexes, neutrophil-released dsDNA, or circulating proteins were also significant. Increased serum levels of IGFBP-2, TFF-3, CD147, and CHI3L1 accompanied GPA exacerbation, whereas DPP-IV levels were the lowest in active GPA. Using a principal component analysis basigin, PTEN and mTOR had the highest loadings on the discrimination function, allowing classification between active, remission, and control subjects with 98% performance.
Conclusions:
We present evidence that inhibited mTOR signaling accompanies NETosis in patients with GPA. The functional status of phosphoproteins suggests simultaneous activation of NETosis and autophagy. These results give rise to the study of autophagy as a mechanism underlying granuloma formation in GPA.
Insights
In granulomatosis with polyangiitis (GPA), inhibited mammalian target of rapamycin (mTOR) signaling is linked to neutrophil extracellular trap formation (NETosis). This finding suggests autophagy may play a role in GPA granuloma development.
Area of Science:
- Immunology
- Cell Biology
- Rheumatology
Background:
- Granulomatosis with polyangiitis (GPA) is a small vessel vasculitis characterized by complex pathomechanisms and organ damage.
- Neutrophil extracellular trap formation (NETosis) is implicated in the pathogenesis of GPA.
Purpose of the Study:
- To investigate the functional status of phosphoproteins in the mammalian target of rapamycin (mTOR) pathway that modulate NETosis in GPA.
- To analyze NETosis biomarkers in relation to these phosphoproteins.
Main Methods:
- Neutrophils were isolated from 42 GPA patients (21 active, 21 remission) and 21 healthy controls.
- Phosphoprotein levels and serum biomarkers of GPA activity were measured and compared.
- Principal component analysis was used to classify disease states.
Main Results:
- Active GPA neutrophils showed decreased phosphorylated mTOR, PTEN, and ULK1, with elevated phosphorylated GSK-3α/β.
- Biomarkers of NETosis, including dsDNA and mitochondrial DNA, were elevated in active GPA.
- Correlations were found between phosphoprotein levels and GPA activity biomarkers, with high classification performance (98%) using PCA.
Conclusions:
- Inhibited mTOR signaling is associated with NETosis in GPA patients.
- The phosphoprotein profiles suggest concurrent activation of NETosis and autophagy.
- Further research into autophagy's role in GPA granuloma formation is warranted.
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