Disulfide-bond A oxidoreductase-like protein protects against ectopic fat deposition and lipid-related kidney damage in diabetic nephropathy

Kidney Int. 2019 Apr;95(4):880-895. doi: 10.1016/j.kint.2018.10.038. Epub 2019 Feb 18.

Abstract

Ectopic fat deposition (EFD) in the kidney has been shown to play a causal role in diabetic nephropathy; however, the mechanism underlying EFD remains elusive. By transcriptome analysis, we found decreased expression levels of disulfide-bond A oxidoreductase-like protein (DsbA-L) in the kidneys of diabetic mice (induced by high-fat diet plus Streptozotocin) compared with control mice. Increased expression of adipocyte differentiation-related protein and abnormal levels of collagen I, fibronectin, and phosphorylated 5'AMP-activated kinase (p-AMPK), adipose triglyceride lipase (p-ATGL), and HMG-CoA reductase (p-HMGCR) were also observed in diabetic mice. These alterations were accompanied by deposition of lipid droplets in the kidney, and were more pronounced in diabetic DsbA-L knockout mice. In vitro, overexpression of DsbA-L ameliorated high glucose-induced intracellular lipid droplet deposition in a human proximal tubular cell line, and DsbA-L siRNA aggravated lipid droplet deposition and reduced the levels of p-AMPK, p-ATGL, and p-HMGCR. High glucose and palmitic acid treatment enhanced the expression of interleukin-1β and interleukin-18; these enhancements were further increased after treatment with DsbA-L siRNA but alleviated by co-treatment with an AMPK activator. In kidney biopsy tissue from patients with diabetic nephropathy, DsbA-L expression was negatively correlated with EFD and tubular damage. Collectively, these results suggest that DsbA-L has a protective role against EFD and lipid-related kidney damage in diabetic nephropathy. Activation of the AMPK pathway is a potential mechanism underlying DsbA-L action in the kidney.

Keywords: diabetic nephropathy; disulfide-bond A oxidoreductase-like protein; ectopic fat deposition.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenylate Kinase / metabolism
  • Adult
  • Animals
  • Biopsy
  • Cell Line
  • Cholesterol / biosynthesis
  • Diabetes Mellitus, Experimental / etiology
  • Diabetes Mellitus, Experimental / metabolism
  • Diabetic Nephropathies / etiology
  • Diabetic Nephropathies / metabolism
  • Diabetic Nephropathies / pathology*
  • Diet, High-Fat / adverse effects
  • Female
  • Glutathione Transferase / genetics
  • Glutathione Transferase / metabolism*
  • Humans
  • Hydroxymethylglutaryl CoA Reductases / metabolism
  • Kidney / cytology
  • Kidney / pathology*
  • Lipid Droplets / pathology
  • Lipid Metabolism*
  • Male
  • Mice
  • Mice, Knockout
  • Middle Aged
  • RNA, Small Interfering / metabolism
  • Streptozocin / toxicity

Substances

  • RNA, Small Interfering
  • Streptozocin
  • Cholesterol
  • Hydroxymethylglutaryl CoA Reductases
  • GSTK1 protein, human
  • Glutathione Transferase
  • disulfide-bond A oxidoreductase-like protein DsbA-L, mouse
  • Adenylate Kinase