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NMDA Suppresses Pancreatic ABCA1 Expression through the MEK/ERK/LXR Pathway in Pancreatic Beta Cells
Takanobu Saheki1, Hitomi Imachi1, Kensaku Fukunaga1
1Department of Endocrinology and Metabolism, Faculty of Medicine, Kagawa University, 1750-1, Ikenobe, Miki-cho, Kita-gun 761-0793, Japan.
Abstract:
Dysfunction or loss of pancreatic β cells can cause insulin deficiency and impaired glucose regulation, resulting in conditions like type 2 diabetes. The ATP-binding cassette transporter A1 (ABCA1) plays a key role in the reverse cholesterol transport system, and its decreased expression is associated with pancreatic β cell lipotoxicity, resulting in abnormal insulin synthesis and secretion. Increased glutamate release can cause glucotoxicity in β cells, though the detailed mechanisms remain unclear. This study investigated the effect of N-methyl-D-aspartic acid (NMDA) on ABCA1 expression in INS-1 cells and primary pancreatic islets to elucidate the signaling mechanisms that suppress insulin secretion. Using Western blotting, microscopy, and biochemical analyses, we found that NMDA activated the mitogen-activated protein kinase (MEK)-dependent pathway, suppressing ABCA1 protein and mRNA expression. The MEK-specific inhibitor PD98059 restored ABCA1 promoter activity, indicating the involvement of the extracellular signal-regulated kinase (MEK/ERK) pathway. Furthermore, we identified the liver X receptor (LXR) as an effector transcription factor in NMDA regulation of ABCA1 transcription. NMDA treatment increased cholesterol and triglyceride levels while decreasing insulin secretion, even under high-glucose conditions. These effects were abrogated by treatment with PD98059. This study reveals that NMDA suppresses ABCA1 expression via the MEK/ERK/LXR pathway, providing new insights into the pathological suppression of insulin secretion in pancreatic β cells and emphasizing the importance of investigating the role of NMDA in β cell dysfunction.
Insights
N-methyl-D-aspartic acid (NMDA) suppresses ATP-binding cassette transporter A1 (ABCA1) expression in pancreatic beta cells via the MEK/ERK/LXR pathway. This mechanism impairs insulin secretion and glucose regulation, contributing to type 2 diabetes pathogenesis.
Area of Science:
- Endocrinology
- Cell Biology
- Metabolic Diseases
Background:
- Pancreatic beta cell dysfunction impairs glucose regulation and causes insulin deficiency, linked to type 2 diabetes.
- Reduced ATP-binding cassette transporter A1 (ABCA1) expression is associated with beta cell lipotoxicity and abnormal insulin secretion.
- Glucotoxicity from increased glutamate release affects beta cells, but mechanisms are unclear.
Purpose of the Study:
- To investigate how N-methyl-D-aspartic acid (NMDA) affects ABCA1 expression in pancreatic beta cells.
- To elucidate the signaling pathways involved in NMDA-induced suppression of insulin secretion.
- To understand the role of NMDA in beta cell dysfunction and its link to diabetes.
Main Methods:
- Western blotting and microscopy to assess protein and mRNA expression.
- Biochemical analyses to measure cholesterol, triglycerides, and insulin secretion.
- Use of INS-1 cells and primary pancreatic islets.
- Employing MEK-specific inhibitor (PD98059) and analyzing ABCA1 promoter activity.
Main Results:
- NMDA activated the MEK/ERK pathway, suppressing ABCA1 protein and mRNA expression.
- The MEK/ERK pathway and liver X receptor (LXR) were identified as key mediators of NMDA's effect on ABCA1 transcription.
- NMDA increased cellular cholesterol and triglycerides, reduced insulin secretion, and these effects were reversed by PD98059.
Conclusions:
- NMDA suppresses ABCA1 expression through the MEK/ERK/LXR signaling cascade in pancreatic beta cells.
- This pathway contributes to the pathological suppression of insulin secretion and beta cell dysfunction.
- Findings highlight the importance of NMDA's role in beta cell dysfunction relevant to type 2 diabetes.
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