KIM-1 mediates fatty acid uptake by renal tubular cells to promote progressive diabetic kidney disease.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33951465.
- Also identified by DOI 10.1016/j.cmet.2021.04.004 and PMC identifier 8132466.
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Abstract
Tubulointerstitial abnormalities are predictive of the progression of diabetic kidney disease (DKD), and their targeting may be an effective means for prevention. Proximal tubular (PT) expression of kidney injury molecule (KIM)-1, as well as blood and urinary levels, are increased early in human diabetes and can predict the rate of disease progression. Here, we report that KIM-1 mediates PT uptake of palmitic acid (PA)-bound albumin, leading to enhanced tubule injury with DNA damage, PT cell-cycle arrest, interstitial inflammation and fibrosis, and secondary glomerulosclerosis. Such injury can be ameliorated by genetic ablation of the KIM-1 mucin domain in a high-fat-fed streptozotocin mouse model of DKD. We also identified TW-37 as a small molecule inhibitor of KIM-1-mediated PA-albumin uptake and showed in vivo in a kidney injury model in mice that it ameliorates renal inflammation and fibrosis. Together, our findings support KIM-1 as a new therapeutic target for DKD.
Medical subject headings
- Diabetic Nephropathies
- Fatty Acids
- Hepatitis A Virus Cellular Receptor 1