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Increased Mitochondrial Protein Levels and Bioenergetics in the Musculus Rectus Femoris of Wfs1-Deficient Mice

机译:在WFS1缺陷小鼠的肌肌乙孢子患者中增加线粒体蛋白质水平和生物植被增加

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摘要

Wfs1 deficiency leads to a progressive loss of plasma insulin concentration, which should reduce the consumption of glucose in insulin-dependent tissues, causing a variety of changes in intracellular energy metabolism. Our objective here was to assess the changes in the amount and function of mitochondrial proteins in different muscles of Wfs1-deficient mice. Mitochondrial functions were assayed by high-resolution oxygraphy of permeabilized muscle fibers; the protein amount was evaluated by liquid chromatography tandem mass spectrometry (LC/MS/MS) analysis and mRNA levels of the uncoupler proteins UCP2 and UCP3 by real-time PCR; and citrate synthase (CS) activity was determined spectrophotometrically in muscle homogenates. Compared to controls, there were no changes in proton leak and citrate synthase activity in the heart and m. soleus tissues of Wfs1-deficient mice, but significantly higher levels of both of these factors were observed in the m. rectus femoris; mitochondrial proteins and mRNA of UCP2 were also higher in the m. rectus femoris. ADP-stimulated state 3 respiration was lower in the m. soleus, remained unchanged in the heart, and was higher in the m. rectus femoris. The mitochondrial protein amount and activity are higher in Wfs1-deficient mice, as are mitochondrial proton leak and oxygen consumption in m. rectus femoris. These changes in muscle metabolism may be important for identifying the mechanisms responsible for Wolfram syndrome and diabetes.
机译:WFS1缺乏导致血浆胰岛素浓度的渐进损失,这应该减少胰岛素依赖组织中葡萄糖的消耗,导致细胞内能量代谢的各种变化。我们这里的目标是评估线粒体蛋白在WFS1缺陷小鼠的不同肌肉中的量和功能的变化。通过高分辨率抗肌纤维测定线粒体功能;通过实时PCR通过液相色谱串联质谱(LC / MS / MS)分析和UCP3的MRNA水平来评价蛋白质量。并在肌肉匀浆中分光光度法测定柠檬酸合酶(Cs)活性。与对照相比,心脏和M的质子泄漏和柠檬酸合酶活性没有变化。 WFS1缺陷小鼠的Soleus组织,但在M中观察到这些因子的显着较高。直肠股骨; MitoCoCondrial蛋白和UCP2的mRNA在m中也较高。直肠股骨。 ADP刺激的状态3呼吸在M中较低。 SOLEUS,心脏保持不变,在m中较高。直肠股骨。在WFS1缺陷小鼠中,线粒体蛋白质量和活性较高,因为Mitoocondral质子泄漏和M中的氧消耗。直肠股骨。这些肌肉代谢的变化对于鉴定负责Wolfram综合征和糖尿病的机制可能是重要的。

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