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机译:专家的病人。

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Mitochondria-associated endoplasmic reticulum membranes (MAM) play a key role in mitochondrial dynamics and function and in hepatic insulin action. Whereas mitochondria are important regulators of energy metabolism, the nutritional regulation of MAM in the liver and its role in the adaptation of mitochondria physiology to nutrient availability are unknown. In this study, we found that the fasted to postprandial transition reduced the number of endoplasmic reticulum-mitochondria contact points in mouse liver. Screening of potential hormonal/metabolic signals revealed glucose as the main nutritional regulator of hepatic MAM integrity both in vitro and in vivo Glucose reduced organelle interactions through the pentose phosphate-protein phosphatase 2A (PP-PP2A) pathway, induced mitochondria fission, and impaired respiration. Blocking MAM reduction counteracted glucose-induced mitochondrial alterations. Furthermore, disruption of MAM integrity mimicked effects of glucose on mitochondria dynamics and function. This glucose-sensing system is deficient in the liver of insulin-resistant ob/ob and cyclophilin D-KO mice, both characterized by chronic disruption of MAM integrity, mitochondrial fission, and altered mitochondrial respiration. These data indicate that MAM contribute to the hepatic glucose-sensing system, allowing regulation of mitochondria dynamics and function during nutritional transition. Chronic disruption of MAM may participate in hepatic mitochondrial dysfunction associated with insulin resistance.
机译:线粒体相关的内质网膜(MAM)在线粒体动力学和功能以及肝胰岛素作用中起关键作用。线粒体是能量代谢的重要调节剂,但肝脏中MAM的营养调节及其在线粒体生理适应养分利用率方面的作用尚不清楚。在这项研究中,我们发现禁食到餐后过渡减少了小鼠肝脏内质网-线粒体接触点的数量。体内和体内潜在激素/代谢信号的筛选显示葡萄糖是体内和体外肝MAM完整性的主要营养调节剂葡萄糖通过戊糖磷酸-蛋白磷酸酶2A(PP-PP2A)途径降低了细胞器的相互作用,诱导了线粒体裂变,并损害了呼吸。阻止MAM降低可抵消葡萄糖诱导的线粒体改变。此外,MAM完整性的破坏模仿了葡萄糖对线粒体动力学和功能的影响。该葡萄糖感测系统在胰岛素抵抗性ob / ob和亲环蛋白D-KO小鼠的肝脏中缺乏,均以MAM完整性的慢性破坏,线粒体裂变和线粒体呼吸改变为特征。这些数据表明,MAM有助于肝葡萄糖传感系统,可在营养过渡期间调节线粒体的动力学和功能。 MAM的慢性破坏可能参与与胰岛素抵抗相关的肝线粒体功能障碍。

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