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代谢应激下人胰岛中调节胰岛素分泌的线粒体载体的分析。

Mitochondrial Carriers Regulating Insulin Secretion Profiled in Human Islets upon Metabolic Stress.

机构信息

Department of Cell Physiology and Metabolism & Faculty Diabetes Center, University of Geneva Medical Center, 1206 Geneva, Switzerland.

出版信息

Biomolecules. 2020 Nov 12;10(11):1543. doi: 10.3390/biom10111543.

Abstract

Chronic exposure of β-cells to nutrient-rich metabolic stress impairs mitochondrial metabolism and its coupling to insulin secretion. We exposed isolated human islets to different metabolic stresses for 3 days: 0.4 mM oleate or 0.4 mM palmitate at physiological 5.5 mM glucose (lipotoxicity), high 25 mM glucose (glucotoxicity), and high 25 mM glucose combined with 0.4 mM oleate and/or palmitate (glucolipotoxicity). Then, we profiled the mitochondrial carriers and associated genes with RNA-Seq. Diabetogenic conditions, and in particular glucotoxicity, increased expression of several mitochondrial solute carriers in human islets, such as the malate carrier DIC, the α-ketoglutarate-malate exchanger OGC, and the glutamate carrier GC1. Glucotoxicity also induced a general upregulation of the electron transport chain machinery, while palmitate largely counteracted this effect. Expression of different components of the TOM/TIM mitochondrial protein import system was increased by glucotoxicity, whereas glucolipotoxicity strongly upregulated its receptor subunit TOM70. Expression of the mitochondrial calcium uniporter MCU was essentially preserved by metabolic stresses. However, glucotoxicity altered expression of regulatory elements of calcium influx as well as the Na/Ca exchanger NCLX, which mediates calcium efflux. Overall, the expression profile of mitochondrial carriers and associated genes was modified by the different metabolic stresses exhibiting nutrient-specific signatures.

摘要

β细胞长期暴露于富含营养的代谢应激会损害线粒体代谢及其与胰岛素分泌的偶联。我们将分离的人胰岛暴露于不同的代谢应激 3 天:0.4 mM 油酸盐或 0.4 mM 棕榈酸盐在生理 5.5 mM 葡萄糖(脂毒性)、高 25 mM 葡萄糖(糖毒性)和高 25 mM 葡萄糖与 0.4 mM 油酸盐和/或棕榈酸盐(糖脂毒性)。然后,我们使用 RNA-Seq 对线粒体载体和相关基因进行了分析。致糖尿病条件,特别是糖毒性,增加了人胰岛中几种线粒体溶质载体的表达,如苹果酸载体 DIC、α-酮戊二酸-苹果酸载体 OGC 和谷氨酸载体 GC1。糖毒性还诱导了电子传递链机械的普遍上调,而棕榈酸盐在很大程度上抵消了这种作用。TOM/TIM 线粒体蛋白输入系统的不同组件的表达通过糖毒性增加,而糖脂毒性强烈上调其受体亚基 TOM70。线粒体钙单向转运蛋白 MCU 的表达基本不受代谢应激的影响。然而,糖毒性改变了钙流入的调节元件以及介导钙外排的 Na/Ca 交换体 NCLX 的表达。总的来说,不同代谢应激所表现出的营养特异性特征改变了线粒体载体和相关基因的表达谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea50/7697104/315b12ad1ed2/biomolecules-10-01543-g001.jpg

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