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首页> 外文期刊>American Journal of Physiology >The role of mitochondrial bioenergetics and reactive oxygen species in coronary collateral growth.
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The role of mitochondrial bioenergetics and reactive oxygen species in coronary collateral growth.

机译:线粒体生物能源和活性氧物种在冠状动脉侧侧生长中的作用。

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Coronary collateral growth is a process involving coordination between growth factors expressed in response to ischemia and mechanical forces. Underlying this response is proliferation of vascular smooth muscle and endothelial cells, resulting in an enlargement in the caliber of arterial-arterial anastomoses, i.e., a collateral vessel, sometimes as much as an order of magnitude. An integral element of this cell proliferation is the process known as phenotypic switching in which cells of a particular phenotype, e.g., contractile vascular smooth muscle, must change their phenotype to proliferate. Phenotypic switching requires that protein synthesis occurs and different kinase signaling pathways become activated, necessitating energy to make the switch. Moreover, kinases, using ATP to phosphorylate their targets, have an energy requirement themselves. Mitochondria play a key role in the energy production that enables phenotypic switching, but under conditions where mitochondrial energy production is constrained, e.g., mitochondrial oxidative stress, this switch is impaired. In addition, we discuss the potential importance of uncoupling proteins as modulators of mitochondrial reactive oxygen species production and bioenergetics, as well as the role of AMP kinase as an energy sensor upstream of mammalian target of rapamycin, the master regulator of protein synthesis.
机译:冠状抵押成长是涉及患有缺血和机械力的生长因子之间的协调的过程。在这种反应的基础上是血管平滑肌和内皮细胞的增殖,导致动脉动脉吻合术的口径中的放大,即侧支血管,有时像数量级一样多。这种细胞增殖的整体元件是称为表型切换的方法,其中特定表型的细胞,例如收缩血管平滑肌,必须改变其表型以增殖。表型切换需要蛋白质合成而发生,不同的激酶信号传导途径被激活,需要能量来制造开关。此外,使用ATP磷酸化其目标的激酶具有能量要求。线粒体在能量生产中发挥关键作用,使能表型切换,但在线粒体能量产生受约束的条件下,例如线粒体氧化应激,该开关受到损害。此外,我们探讨了解耦蛋白作为线粒体反应性氧物种生产和生物能源的调节剂的潜在重要性,以及AMP激酶作为哺乳动物催选毒素哺乳动物靶标上游的能量传感器的作用,蛋白质合成。

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