miR-124-3p improves mitochondrial function of renal tubular epithelial cells in db/db mice
Luqun Liang1,2, Chunxin Wo3, Yao Yuan4
1Department of Pathophysiology, Basic Medical College, Guizhou Medical University, Guiyang, China.
Abstract:
Diabetic kidney disease (DKD) is one of the most serious complications of diabetes mellitus (DM) and the main cause of end-stage renal failure. However, the pathogenesis of DKD is complicated. In this study, we found that miR-124-3p plays a key role in regulating renal mitochondrial function and explored its possible mechanism in DKD progression by performing a series of in vitro and in vivo experiments. Decreased expression of miR-124-3p was found in db/db mice compared to db/m mice. Moreover, miR-124-3p down-regulated FOXQ1 by targeting FOXQ1 mRNA 3'-UTR in NRK-52E cells. Also, an increase in FOXQ1 and down-regulation of Sirt4 were found in db/db mouse kidney and renal tubular epithelial cells cultured with high glucose and high lipid. Overexpression of FOXQ1 could further down-regulate the expression of Sirt4 and aggravate the damage of mitochondria. Conversely, the knockdown of the FOXQ1 gene induced Sirt4 expression and partially restored mitochondrial function. To verify the effects of miR-124-3p on Sirt4 and mitochondria, we found that miR-124-3p mimics could up-regulate Sirt4 and inhibit ROS production and MitoSOX, thus restoring the number and morphology of mitochondria. These results showed that under high-glucose and high-lipid conditions, the down-regulation of miR-124-3p induces FOXQ1 in renal tubular epithelial cells, which in turn suppresses Sirt4 and leads to mitochondrial dysfunction, promoting the development of DKD.
Insights
Diabetic kidney disease (DKD) progression involves decreased miR-124-3p, which increases FOXQ1. This leads to suppressed Sirt4, causing mitochondrial dysfunction and kidney damage.
Area of Science:
- Nephrology
- Molecular Biology
- Mitochondrial Biology
Background:
- Diabetic kidney disease (DKD) is a severe complication of diabetes mellitus (DM), leading to end-stage renal failure.
- The complex pathogenesis of DKD involves mitochondrial dysfunction.
Purpose of the Study:
- To investigate the role of miR-124-3p in regulating renal mitochondrial function.
- To elucidate the mechanism of miR-124-3p in DKD progression.
Main Methods:
- In vitro and in vivo experiments were conducted.
- Expression levels of miR-124-3p, FOXQ1, and Sirt4 were analyzed in mouse models and cell cultures.
- Luciferase reporter assays were used to confirm targeting of FOXQ1 by miR-124-3p.
Main Results:
- miR-124-3p expression was decreased in db/db mice and high glucose/lipid-treated cells.
- miR-124-3p directly targets FOXQ1 mRNA, down-regulating its expression.
- Increased FOXQ1 suppressed Sirt4, leading to mitochondrial damage (ROS production, altered morphology).
- miR-124-3p mimics restored Sirt4 expression and mitochondrial function.
Conclusions:
- Down-regulation of miR-124-3p in DKD promotes FOXQ1 expression.
- FOXQ1-mediated suppression of Sirt4 contributes to mitochondrial dysfunction in DKD.
- Targeting the miR-124-3p/FOXQ1/Sirt4 axis may offer a therapeutic strategy for DKD.
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