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Berberine Potentiates Insulin Secretion and Prevents β-cell Dysfunction Through the miR-204/SIRT1 Signaling Pathway
Xiaoyan Lv1,2, Yali Zhao1, Xuehan Yang1
1Department of Pharmacology, College of Basic Medical Sciences, Jilin University, Changchun, China.
Abstract:
Pancreatic β-cell dysfunction is a key link during the progression of type 2 diabetes (T2DM), and SIRT1 participates in the regulation of various physiological activities of islet β-cells. However, as a key link in signal transduction, it is not clear how SIRT1 is regulated. By TargetScan prediction, we found that miR-204, which is enriched in islets, has highly complementary binding sites with SIRT1. Therefore, we speculate that miR-204 may be the upstream regulatory target of SIRT1 in islets and thus participate in the occurrence of β-cell dysfunction. In this study, we explored the association between miR-204 and β-cell dysfunction, the therapeutic effects of berberine (BBR) on β-cell function and the possible mechanisms. We found that miR-204 increased and SIRT1 mRNA and protein levels decreased significantly in islets both in vivo and in vitro. MIN6 cells induced by palmitic acid exhibited increased apoptosis, and the accumulation of insulin and ATP in the supernatant decreased. Importantly, palmitic acid treatment combined with miR-204 silencing showed opposite changes. MiR-204 overexpression in MIN6 cells increased apoptosis and decreased insulin and ATP production and SIRT1 expression. SIRT1 overexpression reversed the damage to β-cells caused by miR-204. The BBR treatment effectively improved insulin synthesis, reduced miR-204 levels, and increased SIRT1 expression in islet tissue in diabetic mice. Overexpression of miR-204 reversed the protective effect of BBR on apoptosis and insulin secretion in MIN6 cells. Our study identifies a novel correlation between miR-204 and β-cell dysfunction in T2DM and shows that administration of BBR leads to remission of β-cell dysfunction by regulating the miR-204/SIRT1 pathway.
Insights
MicroRNA-204 (miR-204) exacerbates pancreatic beta-cell dysfunction in type 2 diabetes (T2DM) by suppressing SIRT1. Berberine (BBR) treatment improves beta-cell function by restoring the miR-204/SIRT1 pathway.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Pancreatic beta-cell dysfunction is central to type 2 diabetes (T2DM) pathogenesis.
- Sirtuin 1 (SIRT1) plays a crucial role in islet beta-cell function, but its regulation is not fully understood.
- MicroRNAs (miRNAs) are emerging as key regulators in metabolic diseases.
Purpose of the Study:
- To investigate the role of miR-204 in beta-cell dysfunction in T2DM.
- To explore the regulatory relationship between miR-204 and SIRT1 in pancreatic islets.
- To evaluate the therapeutic potential of berberine (BBR) on beta-cell function via the miR-204/SIRT1 pathway.
Main Methods:
- Bioinformatic prediction identified a potential interaction between miR-204 and SIRT1.
- In vivo and in vitro studies using MIN6 cells and diabetic mouse models.
- Assessment of beta-cell apoptosis, insulin, and ATP levels.
- Manipulation of miR-204 and SIRT1 expression levels.
- Treatment with berberine (BBR).
Main Results:
- miR-204 levels were elevated, while SIRT1 expression was decreased in T2DM islets.
- Palmitic acid-induced beta-cell dysfunction was exacerbated by miR-204 overexpression and ameliorated by miR-204 silencing.
- SIRT1 overexpression reversed the detrimental effects of miR-204 on beta-cells.
- BBR treatment reduced miR-204, increased SIRT1 expression, and improved beta-cell function in diabetic mice.
- BBR's protective effects were diminished by miR-204 overexpression.
Conclusions:
- miR-204 acts as a negative regulator of SIRT1 in pancreatic beta-cells, contributing to T2DM-associated dysfunction.
- The miR-204/SIRT1 axis represents a novel therapeutic target for T2DM.
- Berberine ameliorates beta-cell dysfunction by modulating the miR-204/SIRT1 pathway, offering a potential treatment strategy.
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