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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Mitochondrial respiration in the low oxygen environment of the cell Effect of ADP on oxygen kinetics
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Mitochondrial respiration in the low oxygen environment of the cell Effect of ADP on oxygen kinetics

机译:细胞低氧环境下的线粒体呼吸作用ADP对氧动力学的影响

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Oxygen levels in the intracellular microenvironment of tissues such as heart are extremely low, at 1-2% of standard atmospheric oxygen pressure. Kinetic studies with isolated mitochondria suggest a regulatory role of oxygen under these conditions, particularly in active states at high ADP concentration, when oxygen affinity was lower than in the resting state at ADP limitation. The oxygen pressure at 50% of maximum flux, p_(50), was 0.035 and 0.057 kPa in heart and liver mitochondria, respiring in state 3 on substrates for complex I or II and II, respectively. p_(50) in the resting state 4 was 0.02 kPa. The apparent kinetic efficiency, J_(max)/p_(50), increased from the resting to the active state, despite the decrease of oxygen affinity, 1/p_(50). Consequently, the relative increase of respiratory flux by ADP activation, expressed as the adenylate control ratio, declined under hypoxia, but not to the extreme of a complete loss of the scope for activation, which would occur at constant J_(max)/p_(50). High oxygen affinity is achieved by an excess capacity of cytochrome c oxidase relative to the respiratory chain and a correspondingly low turnover rate of this enzyme, consistent with the concept of kinetic trapping of oxygen [1].
机译:组织(如心脏)的细胞内微环境中的氧含量极低,仅为标准大气氧压的1-2%。用孤立的线粒体进行的动力学研究表明,在这些条件下,尤其是在高ADP浓度的活性状态下,氧的亲和力低于在ADP限制下的静止状态时,氧的调节作用。在心脏和肝脏线粒体中,最大通量的50%p_(50)处的氧气压力分别为0.035和0.057 kPa,在复合物I或II和II的底物上处于状态3时呼吸。静止状态4下的p_(50)为0.02kPa。尽管氧亲和力降低了1 / p_(50),但表观动力学效率J_(max)/ p_(50)从静止状态提高到了活性状态。因此,在缺氧条件下,通过ADP激活引起的呼吸通量的相对增加(以腺苷酸控制比表示)下降了,但并未达到完全失去激活范围的极端情况,这会在常数J_(max)/ p_( 50)。高氧亲和力是通过细胞色素C氧化酶相对于呼吸链的过剩容量和该酶相应较低的周转率来实现的,这与氧的动态捕集原理一致[1]。

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