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Updated: Aug 2, 2025

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
Circular RNA COL1A2 Mediates High Glucose-Induced Oxidative Stress and Pyroptosis by Regulating MiR-424-5p/SGK1 in
Langen Zhuang1, Guoxi Jin2, Wang Qiong2
1Department of Endocrinology, The First Affiliated Hospital of Bengbu Medical College, No. 287, Changhuai Road, Bengbu, 233004, Anhui, China. qwek114@163.com.
Abstract:
Diabetic nephropathy (DN) represents a major diabetes-related complication, which could undermine renal function. CircCOL1A2 has been previously reported to show abnormal expression during DN. However, its functional role in the progression of DN, as well as the potential molecular mechanisms, remains unclear. The present work examined the expression of circCOL1A2 in the plasma of DN patients, and employed high glucose (HG)-challenged HK-2 cells as the in vitro cell model of hyperglycemia (HG)-induced DN. CircCOL1A2 was silenced using siRNA in HK-2 cells to clarify the functional engagement of circCOL1A2 in HG-induced DN. We examined the roles of circCOL1A2 in regulating oxidative stress by measuring reactive oxygen species (ROS), lipid peroxidation, and superoxide dismutase (SOD) levels. Besides, the effects of circCOL1A2 silencing on pyroptosis were investigated by RT-qPCR, western blot (WB), and ELISA assays. StarBase (version 2.0) was used to identify the downstream effector of circCOL1A2, and their interactions were further verified through dual-luciferase reporter analysis, RNA pull-down assays, and RNA immunoprecipitation (RIP) assay. CircCOL1A2 was highly expressed in DN patients and HG-induced HK-2 cells. Knocking down circCOL1A2 alleviated oxidative stress and pyroptosis upon HG treatment. In addition, we demonstrated that circCOL1A2 knockdown could promote miR-424-5p expression while inhibiting Serum/Glucocorticoid Regulated Kinase 1 (SGK1) level. Furthermore, miR-424-5p inhibitor or SGK1 overexpression impaired the effects of circCOL1A2 knockdown on HG-induced oxidative stress and pyroptosis. Hence, our results demonstrated that the circCOL1A2 mediates HG-exposed pyroptosis and oxidative stress through modulating miR-424-5p/SGK1 axis in diabetic nephropathy, indicating that silencing circCOL1A2 is a potential intervention strategy for DN management.
Insights
Circular COL1A2 (circCOL1A2) is highly expressed in diabetic nephropathy (DN) and drives kidney cell damage. Silencing circCOL1A2 reduces oxidative stress and pyroptosis, offering a potential therapeutic strategy for DN.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Diabetic nephropathy (DN) is a severe complication of diabetes, leading to kidney dysfunction.
- Abnormal expression of circCOL1A2 is observed in DN, but its precise role and mechanisms remain unclear.
Purpose of the Study:
- To investigate the functional role of circCOL1A2 in high glucose-induced DN.
- To elucidate the molecular mechanisms underlying circCOL1A2's involvement in DN progression.
Main Methods:
- Examined circCOL1A2 expression in DN patients and high glucose (HG)-treated HK-2 cells.
- Utilized siRNA to silence circCOL1A2 and assessed oxidative stress (ROS, lipid peroxidation, SOD) and pyroptosis.
- Identified and verified the interaction between circCOL1A2, miR-424-5p, and SGK1 using bioinformatics and molecular assays.
Main Results:
- CircCOL1A2 expression was significantly elevated in DN patients and HG-induced HK-2 cells.
- Silencing circCOL1A2 ameliorated HG-induced oxidative stress and pyroptosis in HK-2 cells.
- CircCOL1A2 knockdown promoted miR-424-5p and inhibited SGK1, with miR-424-5p inhibitor or SGK1 overexpression reversing these protective effects.
Conclusions:
- CircCOL1A2 exacerbates oxidative stress and pyroptosis in DN by regulating the miR-424-5p/SGK1 axis.
- Targeting circCOL1A2 presents a promising therapeutic avenue for managing diabetic nephropathy.
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