4.7 Article

Metabolic pathways and immunometabolism in rare kidney diseases

期刊

ANNALS OF THE RHEUMATIC DISEASES
卷 77, 期 8, 页码 1227-+

出版社

BMJ PUBLISHING GROUP
DOI: 10.1136/annrheumdis-2017-212935

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资金

  1. Vasculitis Clinical Research Consortium (VCRC) [U54 AR057319]
  2. NIAMS
  3. Else Kroner-Fresenius Foundation (ERCB)
  4. VCRC
  5. University of Michigan
  6. NephCure Kidney International
  7. Halpin Foundation
  8. Applied Systems Biology Core at the University of Michigan George M O'Brien Kidney Translational Core Center
  9. University of Pennsylvania Training Program in Rheumatic Diseases [NIAMS T32AR007442]
  10. National Institutes of Health (NIH) Rare Disease Clinical Research Network (RDCRN)
  11. Nephrotic Syndrome Study Network Consortium (NEPTUNE) [U54 DK083912]

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Objectives To characterise renal tissue metabolic pathway gene expression in different forms of glomerulonephritis. Methods Patients with nephrotic syndrome (NS), antineutrophil cytoplasmic antibody-associated vasculitis (AAV), systemic lupus erythematosus (SLE) and healthy living donors (LD) were studied. Clinically indicated renal biopsies were obtained at time of diagnosis and microdissected into glomerular and tubulointerstitial compartments. Microarray-derived differential gene expression of 88 genes representing critical enzymes of metabolic pathways and 25 genes related to immune cell markers was compared between disease groups. Correlation analyses measured relationships between metabolic pathways, kidney function and cytokine production. Results Reduced steady state levels of mRNA species were enriched in pathways of oxidative phosphorylation and increased in the pentose phosphate pathway (PPP) with maximal perturbation in AAV and SLE followed by NS, and least in LD. Transcript regulation was isozymes specific with robust regulation in hexokinases, enolases and glucose transporters. Intercorrelation networks were observed between enzymes of the PPP (eg, transketolase) and macrophage markers (eg, CD68) (r=0.49, p<0.01). Increased PPP transcript levels were associated with reduced glomerular filtration rate in the glomerular (r=-0.49, p<0.01) and tubulointerstitial (r=-0.41, p<0.01) compartments. PPP expression and tumour necrosis factor activation were tightly co-expressed (r=0.70, p<0.01). Conclusion This study demonstrated concordant alterations of the renal transcriptome consistent with metabolic reprogramming across different forms of glomerulonephritis. Activation of the PPP was tightly linked with intrarenal macrophage marker expression, reduced kidney function and increased production of cytokines. Modulation of glucose metabolism may offer novel immune-modulatory therapeutic approaches in rare kidney diseases.

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