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Pathological roles of advanced glycation end product receptors SR-A and CD36
Seikoh Horiuchi1, Yuka Unno, Hitomi Usui
1Department of Medical Biochemistry, Kumamoto University Graduate School of Medical and Pharmaceutical Sciences, Honjo 1-1-1, Kumamoto 860-8556, Japan. horiuchi@gpo.kumamoto-u.ac.jp
Abstract:
The pathological significance of advanced glycation end product (AGE)-modified proteins deposited in several lesions is generally accounted for by their cellular interaction via the AGE receptors and subsequent acceleration of the inflammatory process. In this study, we focused on two AGE receptors-specifically, the role of SR-A in pathogenesis of diabetic nephropathy and the role of CD36 in AGE-induced downregulation of leptin by adipocytes. In terms of SR-A, diabetic wild-type mice exhibited increased urinary albumin excretion, glomerular hypertrophy, and mesangial matrix expansion, whereas SR-A-knockout mice showed reduced glomerular size and mesangial matrix area. In these diabetic SR-A-knockout mice, the number of macrophages that infiltrated into glomeruli was remarkably reduced (P < 0.05), suggesting that SR-A-dependent glomerular migration of macrophages plays an important role in the pathogenesis of diabetic nephropathy. In terms of CD36, incubation of glycolaldehyde-modified bovine serum albumin (GA-BSA) with 3T3-L1 adipocytes reduced leptin secretion by these cells. The binding of GA-BSA to these cells and subsequent endocytic degradation were effectively inhibited by a neutralizing anti-CD36 antibody. AGE-induced downregulation of leptin was protected by N-acetyl-cysteine, an antioxidant. These results indicate that the interaction of AGE ligands with 3T3-L1 adipocytes via CD36 induces oxidative stress and leads to inhibition of leptin expression by these cells, suggesting a potential link of this phenomenon to exacerbation of the insulin sensitivity in metabolic syndrome.
Insights
Advanced glycation end product (AGE) receptors play key roles in diabetic nephropathy and metabolic syndrome. Scavenger receptor A (SR-A) mediates macrophage infiltration in diabetic kidneys, while CD36 links AGEs to oxidative stress and leptin downregulation in adipocytes.
Area of Science:
- Biochemistry
- Immunology
- Endocrinology
Background:
- Advanced glycation end products (AGEs) are implicated in various pathologies.
- AGEs interact with cell surface receptors, triggering inflammatory responses.
- Specific AGE receptors, SR-A and CD36, are investigated for their roles in disease.
Purpose of the Study:
- To elucidate the role of Scavenger Receptor A (SR-A) in diabetic nephropathy.
- To investigate the involvement of CD36 in AGE-induced leptin downregulation by adipocytes.
- To explore the link between AGE-receptor interactions, oxidative stress, and metabolic syndrome.
Main Methods:
- Diabetic wild-type and SR-A knockout mice were used to assess diabetic nephropathy markers.
- 3T3-L1 adipocytes were treated with AGE-modified bovine serum albumin (GA-BSA).
- Effects were analyzed using antibodies, antioxidants, and leptin secretion assays.
Main Results:
- SR-A knockout mice showed reduced albuminuria, glomerular hypertrophy, and mesangial expansion.
- SR-A deficiency significantly decreased macrophage infiltration in diabetic kidneys.
- CD36 mediated GA-BSA binding and endocytosis, leading to reduced leptin secretion.
- Antioxidant treatment protected against AGE-induced leptin downregulation.
Conclusions:
- SR-A-dependent macrophage migration is crucial in diabetic nephropathy pathogenesis.
- CD36 interaction with AGEs induces oxidative stress in adipocytes, inhibiting leptin expression.
- This AGE-CD36-leptin pathway may contribute to metabolic syndrome exacerbation.
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