缬沙坦可修复 C2C12 肌管胰岛素抵抗期间受抑制的线粒体代谢

IF 2.8 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Emily C. Wyatt, Lindsey R. VanDerStad, Norah E. Cook, Macey R. McGovern, Toheed Zaman, Pamela M. Lundin, Roger A. Vaughan
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引用次数: 0

摘要

在许多人群中,循环支链氨基酸(BCAA)的升高与胰岛素抵抗的严重程度有关,这意味着加强支链氨基酸的新陈代谢是治疗胰岛素抵抗的一种潜在疗法。最近,血管紧张素 II 1 型受体(AT1R)抑制剂缬沙坦(VAL)被确认为支链α-酮酸脱氢酶激酶(BCKDK)的强效抑制剂,而支链α-酮酸脱氢酶激酶是 BCAA 代谢的负调控因子。这项研究调查了 VAL 在胰岛素敏感和胰岛素抵抗条件下对肌管代谢和胰岛素敏感性的影响。在高胰岛素血症诱导的胰岛素抵抗和无胰岛素抵抗的情况下,用或不用 8 µM 的 VAL 处理 C2C12 肌管 24 小时。耗氧量和细胞外酸化分别用于测量线粒体和糖酵解代谢。基因表达通过 qRT-PCR 进行评估,胰岛素敏感性通过 Western 印迹进行评估。胰岛素抵抗会明显降低线粒体的基础和峰值功能,而同时服用 VAL 则可将线粒体功能恢复到控制水平。线粒体功能的变化并未导致线粒体含量或相关基因表达的实质性改变。胰岛素敏感性和糖酵解代谢不受 VAL 的影响,生脂信号转导和脂质含量也是如此。此外,VAL 和胰岛素抵抗都抑制了 Bckdha 的表达。有趣的是,观察到细胞外异亮氨酸、缬氨酸和总 BCAA(但不包括亮氨酸)的相互作用效应,表明 VAL 可能以依赖胰岛素敏感性的方式改变 BCAA 的利用。在肌管模型中,胰岛素抵抗似乎抑制了线粒体功能,而 VAL 可以挽救这种抑制。要在更复杂的模型中探索这些发现的意义,还需要进一步的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Valsartan Rescues Suppressed Mitochondrial Metabolism during Insulin Resistance in C2C12 Myotubes

Valsartan Rescues Suppressed Mitochondrial Metabolism during Insulin Resistance in C2C12 Myotubes

Elevated circulating branched-chain amino acids (BCAA) have been linked with the severity of insulin resistance across numerous populations, implicating heightened BCAA metabolism as a potential therapy for insulin resistance. Recently, the angiotensin II type 1 receptor (AT1R) inhibitor Valsartan (VAL) was identified as a potent inhibitor of branched-chain alpha-keto acid dehydrogenase kinase (BCKDK), a negative regulator of BCAA metabolism. This work investigated the effect of VAL on myotube metabolism and insulin sensitivity under both insulin sensitive and insulin resistant conditions. C2C12 myotubes were treated with or without VAL at 8 µM for 24 h, both with and without hyperinsulinemic-induced insulin resistance. Oxygen consumption and extracellular acidification were used to measure mitochondrial and glycolytic metabolism, respectively. Gene expression was assessed via qRT-PCR, and insulin sensitivity was assessed via Western blot. Insulin resistance significantly reduced both basal and peak mitochondrial function which were rescued to control levels by concurrent VAL. Changes in mitochondrial function occurred without substantial changes in mitochondrial content or related gene expression. Insulin sensitivity and glycolytic metabolism were unaffected by VAL, as was lipogenic signaling and lipid content. Additionally, both VAL and insulin resistance depressed Bckdha expression. Interestingly, an interaction effect was observed for extracellular isoleucine, valine, and total BCAA (but not leucine), suggesting VAL may alter BCAA utilization in an insulin sensitivity-dependent manner. Insulin resistance appears to suppress mitochondrial function in a myotube model which can be rescued by VAL. Further research will be required to explore the implications of these findings in more complex models.

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来源期刊
Cell Biochemistry and Function
Cell Biochemistry and Function 生物-生化与分子生物学
CiteScore
6.20
自引率
0.00%
发文量
93
审稿时长
6-12 weeks
期刊介绍: Cell Biochemistry and Function publishes original research articles and reviews on the mechanisms whereby molecular and biochemical processes control cellular activity with a particular emphasis on the integration of molecular and cell biology, biochemistry and physiology in the regulation of tissue function in health and disease. The primary remit of the journal is on mammalian biology both in vivo and in vitro but studies of cells in situ are especially encouraged. Observational and pathological studies will be considered providing they include a rational discussion of the possible molecular and biochemical mechanisms behind them and the immediate impact of these observations to our understanding of mammalian biology.
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