Related Experiment Video
Updated: Apr 5, 2026

Mechanism of Kemeng Fang's Inhibition of Podocyte Apoptosis in Rats with Membranous Nephropathy through the PI3K/AKT Signaling Pathway
Published on: August 23, 2024
APPL1 acts as a protective factor against podocytes injury in high glucose environment
Zhenzhong Ji1, Zhengguo Hu1, Yancheng Xu2
1Department of Integrated Wards, Zhongnan Hospital of Wuhan University Wuhan 430071, P. R. China.
Abstract:
APPL1, an intracellular adaptor protein, takes part in numerous metabolic reactions. Although APPL1 plays a key role in glucose metabolism via adiponectin pathway and has been proved associated with type 2 diabetes, little is known about its role in diabetic nephropathy. To explore the role of APPL1 in diabetic nephropathy, we upregulated the expression of APPL1 in cultured mouse podocytes by adenovirus infection and tested the effects of APPL1 overexpression in podocytes treated with high glucose. Here, a mouse podocyte cell line (generated from H-2Kb-tsA58 immortmouse) was cultured and divided into four groups: Group 1 (normal glucose, NG), Group 2 (high glucose, HG), Group 3 (HG and infected with control adenovirus) and Group 4 (HG and infected with Ad-APPL1). Cell vitality of Group 4 is significantly higher than Group 2, but notably lower than Group 1 (P<0.01). The apoptosis rate of Group 4 was much lower (P<0.01) than Group 2 and Group 3. A decrease in phase G0/G1 and an increase in phase S was observed in Group 4 compared with Group 2 (P<0.01). These data suggested the protective role of APPL1 overexpression in high glucose condition. Moreover, the levels of Nephrin, AMPK and p-AMPK were decreased by high-glucose treatment, but increased by APPL1 overexpression. In conclusion, in the experimental high glucose condition, APPL1 acts as a protective factor against podocytes injury through regulating AMPK signaling, and may be a new therapy target for diabetic nephropathy.
Insights
APPL1 protein protects against diabetic nephropathy by preserving podocyte health. Overexpression of APPL1 in high glucose conditions improved cell vitality and reduced apoptosis, suggesting a therapeutic target.
Area of Science:
- Cell Biology
- Metabolic Disease Research
- Nephrology
Background:
- APPL1 (Adaptor Protein, Phosphotyrosine Interacting Like 1) is crucial for glucose metabolism and linked to type 2 diabetes.
- The specific role of APPL1 in diabetic nephropathy remains largely unexplored.
Purpose of the Study:
- To investigate the protective effects of APPL1 in high glucose-induced podocyte injury.
- To elucidate the underlying molecular mechanisms involving APPL1 in diabetic nephropathy.
Main Methods:
- Adenovirus-mediated upregulation of APPL1 expression in a mouse podocyte cell line.
- Exposure of podocytes to normal glucose (NG) or high glucose (HG) conditions.
- Assessment of cell vitality, apoptosis, cell cycle, and key protein levels (Nephrin, AMPK, p-AMPK).
Main Results:
- APPL1 overexpression significantly enhanced cell vitality and reduced apoptosis in HG conditions.
- APPL1 modulated cell cycle progression and increased levels of Nephrin, AMPK, and p-AMPK.
- These effects indicate a protective role of APPL1 against high glucose-induced podocyte damage.
Conclusions:
- APPL1 acts as a protective factor against podocyte injury under high glucose conditions.
- APPL1 exerts its protective effects by regulating the AMPK signaling pathway.
- APPL1 represents a potential novel therapeutic target for managing diabetic nephropathy.
Related Concept Videos
Cell Specific Gene Expression
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion
Insulin and C-peptide are...

