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The pivotal role of protein acetylation in linking glucose and fatty acid metabolism to β-cell function

机译:蛋白质乙酰化在将葡萄糖和脂肪酸代谢与β细胞功能联系起来中的关键作用

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Protein acetylation has a crucial role in energy metabolism. Here we performed the first large-scale profiling of acetylome in rat islets, showing that almost all enzymes in core metabolic pathways related to insulin secretion were acetylated. Label-free quantitative acetylome of islets in response to high glucose revealed hyperacetylation of enzymes involved in fatty acid β-oxidation (FAO), including trifunctional enzyme subunit alpha (ECHA). Acetylation decreased the protein stability of ECHA and its ability to promote FAO. The overexpression of SIRT3, a major mitochondrial deacetylase, prevented the degradation of ECHA via decreasing its acetylation level in β-cells. SIRT3 expression was upregulated in rat islets upon exposure to low glucose or fasting. SIRT3 overexpression in islets markedly decreased palmitate-potentiated insulin secretion, whereas islets from SIRT3 knockout mice secreted more insulin, with an opposite action on FAO. ECHA overexpression partially reversed SIRT3 deficiency-elicited insulin hypersecretion. Our study highlights the potential role of protein acetylation in insulin secretion.
机译:蛋白质乙酰化在能量代谢中起着至关重要的作用。在这里,我们对大鼠胰岛进行了首次大规模的乙酰化酶分析,表明与胰岛素分泌相关的核心代谢途径中的几乎所有酶都被乙酰化。胰岛无标记的定量乙酰基体对高葡萄糖的反应表明,与脂肪酸β-氧化(FAO)有关的酶(包括三功能酶亚基α(ECHA))的乙酰化程度较高。乙酰化降低了ECHA的蛋白质稳定性及其促进FAO的能力。 SIRT3(一种主要的线粒体脱乙酰基酶)的过表达,通过降低ECHA在β细胞中的乙酰化水平,阻止了ECHA的降解。暴露于低血糖或禁食的大鼠胰岛中SIRT3表达上调。胰岛中SIRT3的过表达显着降低了棕榈酸酯增强的胰岛素分泌,而来自SIRT3敲除小鼠的胰岛分泌了更多的胰岛素,对FAO的作用相反。 ECHA过表达部分逆转了SIRT3缺乏引起的胰岛素分泌过多。我们的研究突出了蛋白质乙酰化在胰岛素分泌中的潜在作用。

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