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Expression of the mitochondrial calcium uniporter in cardiac myocytes improves impaired mitochondrial calcium handling and metabolism in simulated hyperglycemia

机译:线粒体钙单向蛋白在心肌细胞中的表达改善模拟高血糖症中线粒体钙处理和代谢受损

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摘要

Diabetic cardiomyopathy is associated with metabolic changes, including decreased glucose oxidation (Gox) and increased fatty acid oxidation (FAox), which result in cardiac energetic deficiency. Diabetic hyperglycemia is a pathophysiological mechanism that triggers multiple maladaptive phenomena. The mitochondrial Ca2+ uniporter (MCU) is the channel responsible for Ca2+ uptake in mitochondria, and free mitochondrial Ca2+ concentration ([Ca2+]m) regulates mitochondrial metabolism. Experiments with cardiac myocytes (CM) exposed to simulated hyperglycemia revealed reduced [Ca2+]m and MCU protein levels. Therefore, we investigated whether returning [Ca2+]m to normal levels in CM by MCU expression could lead to normalization of Gox and FAox with no detrimental effects. Mouse neonatal CM were exposed for 72 h to normal glucose [5.5 mM glucose + 19.5 mM mannitol (NG)], high glucose [25 mM glucose (HG)], or HG + adenoviral MCU expression. Gox and FAox, [Ca2+]m, MCU levels, pyruvate dehydrogenase (PDH) activity, oxidative stress, mitochondrial membrane potential, and apoptosis were assessed. [Ca2+]m and MCU protein levels were reduced after 72 h of HG. Gox was decreased and FAox was increased in HG, PDH activity was decreased, phosphorylated PDH levels were increased, and mitochondrial membrane potential was reduced. MCU expression returned these parameters toward NG levels. Moreover, increased oxidative stress and apoptosis were reduced in HG by MCU expression. We also observed reduced MCU protein levels and [Ca2+]m in hearts from type 1 diabetic mice. Thus we conclude that HG-induced metabolic alterations can be reversed by restoration of MCU levels, resulting in return of [Ca2+]m to normal levels.
机译:糖尿病性心肌病与代谢改变有关,包括葡萄糖氧化降低(Gox)和脂肪酸氧化升高(FAox),从而导致心脏能量不足。糖尿病性高血糖是触发多种适应不良现象的病理生理机制。线粒体Ca 2 + 单向转运体(MCU)是负责线粒体中Ca 2 + 摄取和游离线粒体Ca 2 + 浓度的通道( [Ca 2 + ] m)调节线粒体的代谢。暴露于模拟性高血糖的心肌细胞(CM)的实验表明[Ca 2 + ] m和MCU蛋白水平降低。因此,我们研究了通过MCU表达使[Ca 2 + ] m恢复到CM中的正常水平是否可以导致Gox和FAox正常化,而没有有害影响。将小鼠新生CM暴露于正常葡萄糖[5.5 mM葡萄糖+ 19.5 mM甘露醇(NG)],高葡萄糖[25 mM葡萄糖(HG)]或HG +腺病毒MCU表达72小时。评估了Gox和FAox,[Ca 2 + ] m,MCU水平,丙酮酸脱氢酶(PDH)活性,氧化应激,线粒体膜电位和凋亡。 HG 72 h后,[Ca 2 + ] m和MCU蛋白水平降低。 HG中的Gox减少而FAox升高,PDH活性降低,磷酸化PDH水平升高,线粒体膜电位降低。 MCU表达式将这些参数返回到NG级别。此外,通过MCU表达减少了HG中增加的氧化应激和凋亡。我们还观察到1型糖尿病小鼠心脏中MCU蛋白水平和[Ca 2 + ] m降低。因此,我们得出结论,HG引起的代谢改变可以通过恢复MCU水平来逆转,从而导致[Ca 2 + ] m恢复到正常水平。

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