Enhanced dynorphin expression and secretion in pancreatic beta-cells under hyperglycemic conditions

IF 7 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Molecular Metabolism Pub Date : 2025-02-01 DOI:10.1016/j.molmet.2024.102088
Miranda Movahed, Ruy A. Louzada, Manuel Blandino-Rosano
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引用次数: 0

Abstract

Objective

Dynorphin, an endogenous opioid peptide predominantly expressed in the central nervous system and involved in stress response, pain, and addiction, has intrigued researchers due to its expression in pancreatic β-cells. In this study, we aimed to characterize dynorphin expression in mouse and human islets and explore the mechanisms regulating its expression.

Methods

We used primary mouse and human islets with unbiased published datasets to examine how glucose and other nutrients regulate dynorphin expression and secretion in islets.

Results

The prodynorphin gene is significantly upregulated in β-cells under hyperglycemic conditions. In vitro studies revealed that increased glucose concentrations correlate with increased dynorphin expression, indicating a critical interplay involving Ca2+, CamKII, and CREB pathways in β-cells. Perifusion studies allowed us to measure the dynamic secretion of dynorphin in response to glucose from mouse and human islets for the first time. Furthermore, we confirmed that increased dynorphin content within the β-cells directly correlates with enhanced dynorphin secretion. Finally, our findings demonstrate a synergistic effect of palmitate in conjunction with high glucose, further amplifying dynorphin levels and secretion in pancreatic islets.

Conclusions

This study demonstrates that the opioid peptide prodynorphin is expressed in mouse and human β-cells. Prodynorphin levels are regulated in parallel with insulin in response to glucose, palmitate, and amino acids. Our findings elucidate the signaling pathways involved, with CamKII playing a key role in regulating prodynorphin levels in β-cells. Finally, our findings are the first to demonstrate active dynorphin secretion from mouse and human islets in response to glucose.
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高血糖条件下胰腺β细胞中Dynorphin的表达和分泌增强。
目的:Dynorphin是一种内源性阿片肽,主要表达于中枢神经系统,参与应激反应,疼痛和成瘾,由于其在胰腺β细胞中的表达而引起了研究人员的兴趣。在本研究中,我们旨在表征dynorphin在小鼠和人胰岛中的表达,并探讨其表达的调节机制。方法:我们使用小鼠和人的原代胰岛和无偏倚的已发表数据集来研究葡萄糖和其他营养物质如何调节胰岛中肌啡肽的表达和分泌。结果:高血糖状态下β-细胞中前啡肽基因显著上调。体外研究显示,葡萄糖浓度升高与肌啡肽表达增加相关,表明β细胞中涉及Ca2+、CamKII和CREB通路的关键相互作用。灌注研究使我们能够首次测量小鼠和人类胰岛对葡萄糖的动态分泌。此外,我们证实了β细胞中肌啡含量的增加与肌啡分泌的增加直接相关。最后,我们的研究结果表明棕榈酸盐与高葡萄糖的协同作用,进一步放大了胰岛的肌啡水平和分泌。结论:本研究证实阿片肽前啡肽在小鼠和人β细胞中均有表达。前啡肽水平与胰岛素一样受到葡萄糖、棕榈酸酯和氨基酸的调节。我们的研究结果阐明了相关的信号通路,CamKII在调节β细胞的促啡肽水平中起关键作用。最后,我们的发现首次证明了小鼠和人类胰岛对葡萄糖的反应是活跃的促啡肽分泌。
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来源期刊
Molecular Metabolism
Molecular Metabolism ENDOCRINOLOGY & METABOLISM-
CiteScore
14.50
自引率
2.50%
发文量
219
审稿时长
43 days
期刊介绍: Molecular Metabolism is a leading journal dedicated to sharing groundbreaking discoveries in the field of energy homeostasis and the underlying factors of metabolic disorders. These disorders include obesity, diabetes, cardiovascular disease, and cancer. Our journal focuses on publishing research driven by hypotheses and conducted to the highest standards, aiming to provide a mechanistic understanding of energy homeostasis-related behavior, physiology, and dysfunction. We promote interdisciplinary science, covering a broad range of approaches from molecules to humans throughout the lifespan. Our goal is to contribute to transformative research in metabolism, which has the potential to revolutionize the field. By enabling progress in the prognosis, prevention, and ultimately the cure of metabolic disorders and their long-term complications, our journal seeks to better the future of health and well-being.
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