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The protective role of the MKP-5-JNK/P38 pathway in glucolipotoxicity-induced islet β-cell dysfunction and apoptosis
Zhuoyao Song1, Jie Ma1, Yuanhua Lu1
1School of Pharmaceutical Sciences, Jilin University, Changchun, China.
Abstract:
Hyperglycemia and hyperlipidemia (glycolipotoxicity)-triggered islet β-cell dysfunction is known to drive the progression of obesity-related type 2 diabetes, however the underlying mechanisms have not been clearly elucidated. The current study aimed to investigate the role of mitogen-activated protein kinase phosphatase 5 (MKP-5) in islet cells under glucolipotoxic conditions. Using gene overexpression and knockdown approaches, we demonstrated that MKP-5 could alleviate glucolipotoxicity-induced apoptosis via the endoplasmic reticulum (ER) stress and mitochondrial apoptosis pathways owing to the altered regulation of caspase family members and ER stress-related molecules in MIN6 and primary islet cells. Overexpression of MKP-5 reversed the glucose and palmitic acid (GP)-induced impairment of insulin secretion as well as the abnormal decreases in the expression of islet functional genes, thereby maintaining the normal insulin secretory functionality, whereas the absence of MKP-5 aggravated islet cell dysfunction. In parallel, the production of ROS and increased inflammation-associated genes in response to GP were also reduced upon MKP-5 overexpression. Further, inhibition of JNK or P38 MAPK pathways resisted to glucolipotoxicity observed in MKP-5 knockdown MIN6 cells. These findings indicate that MKP-5 is an important mediator for glucolipotoxicity-induced islet cell dysfunction and apoptosis, with JNK and P38 as the critical downstream pathways.
Insights
Mitogen-activated protein kinase phosphatase 5 (MKP-5) protects islet cells from high glucose and lipid damage, crucial for preventing type 2 diabetes progression. MKP-5 maintains insulin secretion and reduces cell death by regulating stress pathways.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Obesity-related type 2 diabetes is driven by high glucose and lipid levels damaging islet beta cells.
- The precise mechanisms behind this glycolipotoxicity-induced beta-cell dysfunction remain unclear.
Purpose of the Study:
- To investigate the role of mitogen-activated protein kinase phosphatase 5 (MKP-5) in islet cells under glucolipotoxic conditions.
- To elucidate MKP-5's involvement in protecting against high glucose and lipid-induced beta-cell apoptosis and dysfunction.
Main Methods:
- Gene overexpression and knockdown of MKP-5 in MIN6 and primary islet cells.
- Analysis of apoptosis pathways (ER stress, mitochondrial), insulin secretion, gene expression, ROS production, and inflammation.
- Inhibition of JNK and P38 MAPK pathways.
Main Results:
- MKP-5 overexpression alleviated glucolipotoxicity-induced apoptosis by modulating ER stress and mitochondrial pathways.
- MKP-5 reversed impaired insulin secretion and normalized islet gene expression under glucolipotoxic conditions.
- MKP-5 reduced ROS production and inflammation; JNK and P38 MAPK pathways were identified as critical downstream effectors.
Conclusions:
- MKP-5 plays a protective role against glucolipotoxicity in islet beta cells.
- MKP-5 mitigates beta-cell dysfunction and apoptosis through JNK and P38 MAPK signaling pathways.
- Targeting MKP-5 may offer a therapeutic strategy for type 2 diabetes management.
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