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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Potential role of subunit c of F0F1-ATPase and subunit c of storage body in the mitochondrial permeability transition. Effect of the phosphorylation status of subunit c on pore opening
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Potential role of subunit c of F0F1-ATPase and subunit c of storage body in the mitochondrial permeability transition. Effect of the phosphorylation status of subunit c on pore opening

机译:F0F1-ATPase亚基c和存储体c亚基在线粒体通透性转变中的潜在作用。 c亚基c的磷酸化状态对开孔的影响

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摘要

Phosphorylated and non-phosphorylated forms of the F0F1-ATPase subunit c from rat liver mitochondria (RLM) were purified and their effect on the opening of the permeability transition pore (mPTP) was investigated. Addition of dephosphorylated subunit c to RLM induced mitochondrial swelling, decreased the membrane potential and reduced the Ca2+ uptake capacity, which was prevented by cyclosporin A. The same effect was observed in the presence of storage subunit c purified from livers of sheep affected with ceroid lipofuscinosis. In black-lipid bilayer membranes subunit c increased the conductance due to formation of single channels with fast and slow kinetics. The dephosphorylated subunit c formed channels with slow kinetics, i.e. the open state being of significantly longer duration than in the case of channels formed by the phosphorylated form that had short life spans and fast kinetics. The channels formed were cation-selective more so with the phosphorylated form. Subunit c of rat liver mitochondria was able to bind Ca2+. Collectively, the data allowed us to suppose that subunit c F0F1-ATPase might be a structural/regulatory component of mPTP exerting its role in dependence on phosphorylation status.
机译:纯化了来自大鼠肝线粒体(RLM)的F0F1-ATPase亚基c的磷酸化和非磷酸化形式,并研究了它们对通透性过渡孔(mPTP)开口的影响。 RLM诱导的线粒体溶胀中添加了去磷酸化的亚基c,降低了膜电位,降低了Ca2 +的吸收能力,这被环孢菌素A阻止了。在从患有类脂褐藻病的绵羊肝脏中纯化得到的储存亚基c的情况下,观察到了相同的效果。 。在黑脂质双层膜中,亚基c由于形成具有快速和慢速动力学的单个通道而增加了电导。脱磷酸亚基c形成的通道具有缓慢的动力学,即,与通过磷酸化形式形成的通道具有短的寿命和快速的动力学的情况相比,打开状态的持续时间明显更长。形成的通道对阳离子具有更高的选择性,因此具有磷酸化形式。大鼠肝线粒体的c亚基能够结合Ca 2+。总体而言,数据使我们假设亚基c F0F1-ATPase可能是mPTP的结构/调节成分,发挥其依赖于磷酸化状态的作用。

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