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Effect of glucose on matrix metalloproteinase activity in mesangial cells
S V McLennan1, D K Yue, J R Turtle
1Department of Medicine, University of Sydney, Royal Prince Alfred Hospital, NSW, Australia.
Abstract:
Mesangial cells are known to secrete matrix metalloproteinases (MMPs). These enzymes play a major role in the degradation and remodelling of extracellular matrix, and alterations in their activity may contribute to the mesangium enlargement of diabetic nephropathy. MMPs are secreted as latent forms which are cleaved in the pericellular environment to form active enzymes. In this study, we used a biosynthetically labelled matrix as substrate and conditioned medium obtained from mesangial cells, as a source of enzymes to investigate the effect of a high glucose concentration on degradative capacity. Inhibitor studies showed that MMPs were responsible for 72.2% of the degradation. A high glucose concentration caused a significant reduction in matrix degradation (low glucose 33.5 +/- 5.6%, high glucose 24.2 +/- 4.8%). Addition of aminophenyl mercuric acetate to activate latent MMPs increased matrix degradation by 2.3-fold in both low- and high-glucose media, but the decreased degradation caused by a high glucose concentration was still apparent. Activation with plasmin also increased matrix degradation and abolished the effect of the high glucose concentration. Gelatin zymography showed that mesangial cells grown at a low glucose concentration secreted both 72- and 92-kD gelatinases; however, at high glucose concentrations the 92-kD gelatinase was no longer apparent. These results suggest that a high glucose concentration causes a reduction in the amount of MMPs secreted by the mesangial cells. This reduction may contribute to the mesangium enlargement of diabetic nephropathy.
Insights
High glucose levels reduce matrix degradation by mesangial cells, decreasing matrix metalloproteinases (MMPs) secretion. This impaired MMP activity may drive mesangial enlargement in diabetic nephropathy.
Area of Science:
- Nephrology
- Cell Biology
- Biochemistry
Background:
- Mesangial cells secrete matrix metalloproteinases (MMPs), crucial for extracellular matrix remodeling.
- Altered MMP activity is implicated in mesangial enlargement characteristic of diabetic nephropathy.
Purpose of the Study:
- To investigate the impact of high glucose concentration on the degradative capacity of mesangial cells.
- To determine the role of MMPs in high glucose-induced matrix degradation.
Main Methods:
- Utilized biosynthetically labeled matrix as substrate and conditioned mesangial cell medium.
- Employed inhibitor studies, chemical activation (aminophenyl mercuric acetate), plasmin activation, and gelatin zymography.
Main Results:
- MMPs accounted for 72.2% of matrix degradation.
- High glucose significantly reduced matrix degradation (33.5% in low glucose vs. 24.2% in high glucose).
- High glucose reduced the secretion of 92-kD gelatinase by mesangial cells.
Conclusions:
- High glucose concentration diminishes the degradative capacity of mesangial cells.
- Reduced MMP secretion under high glucose conditions may contribute to mesangial enlargement in diabetic nephropathy.