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Stanniocalcin-1 Co-Localizes with Insulin in the Pancreatic Islets

机译:Stanniocalcin-1与胰岛素在胰岛中共定位

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The polypeptide hormone stanniocalcin-1 (STC-1) is widely expressed in mammals and signals both locally and systemically. In many tissues STC-1 ligand is sequestered by target cell organelles (mitochondria, nuclei, and cholesterol lipid droplets) to exert diverse biological effects. Most notably, STC-1 serves as an uncoupler of oxidative phosphorylation in liver, muscle, and kidney mitochondria. The present paper describes the identification of STC-1 receptors in mouse pancreaticβcells and the discovery that the ligand co-localizes with insulin in pancreaticβcells.In situhybridization (ISH) analysis subsequently revealed that pancreaticβcells were the source of the ligand. Intriguingly however, all ISH signal was localized over putative islet cell nuclei as opposed to the cell cytoplasm. Real-time qPCR and agarose gel electrophoresis revealed that the STC-1 amplicon generated from islet cell total RNA was the same size as that from kidney. However, relative levels of STC-1 gene expression were >100-fold lower in islets than those in kidney tissue. Collectively, these findings are indicative of a local STC-1 signalling pathway in pancreaticβcells. The role of STC-1 in this context remains to be established, but it could very well entail the regulation ofβcell mitochondria membrane potential which is an integral aspect of regulated insulin release. Interestingly, STC-1 immunoreactivity was not evident in embryonic pancreatic islets, suggesting that ligand synthesis may only commence postnatally.
机译:多肽激素锡钙蛋白-1(STC-1)在哺乳动物中广泛表达,并在局部和全身发出信号。在许多组织中,STC-1配体被靶细胞细胞器(线粒体,细胞核和胆固醇脂滴)隔离,以发挥多种生物学作用。最值得注意的是,STC-1在肝脏,肌肉和肾脏线粒体中充当氧化磷酸化的解偶联剂。本文描述了小鼠胰腺β细胞中STC-1受体的鉴定以及配体与胰岛素在胰腺β细胞中共定位的发现。随后在原位杂交(ISH)分析中发现胰腺β细胞是该配体的来源。有趣的是,所有ISH信号均位于假定的胰岛细胞核上,而不是细胞质中。实时qPCR和琼脂糖凝胶电泳显示,胰岛细胞总RNA产生的STC-1扩增子与肾脏的大小相同。但是,胰岛中STC-1基因表达的相对水平比肾脏组织中的相对水平低100倍以上。这些发现共同表明了胰腺β细胞中的局部STC-1信号传导途径。在这种情况下,STC-1的作用尚待确定,但它很可能需要调节β细胞线粒体膜电位,这是调节胰岛素释放的一个重要方面。有趣的是,STC-1免疫反应性在胚胎胰岛中不明显,这表明配体合成可能仅在出生后开始。

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