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基于对中等和中间磷酸-水交换的测量,线粒体氧化磷酸化中磷酸盐结合的能量依赖性变化的证据。

Evidence for energy-dependent change in phosphate binding for mitochondrial oxidative phosphorylation based on measurements of medium and intermediate phosphate-water exchanges.

作者信息

Rosing J, Kayalar C, Boyer P D

出版信息

J Biol Chem. 1977 Apr 25;252(8):2478-85.

PMID:140165
Abstract

Characteristics of the exchange reactions catalyzed by beef heart submitochondrial particles give new insight into energy transducing steps of oxidative phosphorylation. The uncoupler-insensitive portion of the total Pi in equilibrium HOH exchange in presence of ATP, ADP, and Pi is the intermediate Pi in equilibrium HOH exchange, that is the exchange occurring with Pi formed by hydrolysis of ATP prior to release of Pi from the catalytic site. The exchange of medium Pi with HOH is as sensitive to uncouplers as the Pi in equilibrium ATP exchange and net oxidative phosphorylation, demonstrating a requirement of an uncoupler-sensitive energized state, probably a transmembrane potential or proton gradient, for bringing medium Pi to the reactive state. The covalent bond forming and breaking step at the catalytic site (ADP + Pi in equilibrium ATP + HOH) appears relatively insensitive to uncouplers. Thus to the extent that uncouplers dissipate transmembrane proton-motive force, it is unlikely that such a force is used to drive ATP formation by direct protonations of Pi oxygens. When only Pi and ADP are added and formation of ATP from added ADP by adenylate kinase and subsequent ATP hydrolysis are adequately blocked, no Pi in equilibrium HOH exchange can be observed, demonstrating a requirement of energization by ATP binding and cleavage for such an exchange. This uncoupler-insensitive energization is suggested to represent a conformationally energized state that can be used reversibly to develop a transmembrane protonmotive force accompanying ADP and Pi release. Rates of various exchanges as estimated by improved procedures are compatible with all oxygen exchanges occurring by dynamic reversal of ATP hydrolysis at the catalytic site.

摘要

牛心亚线粒体颗粒催化的交换反应特性为氧化磷酸化的能量转导步骤提供了新的见解。在ATP、ADP和Pi存在的情况下,平衡态HOH交换中总Pi的解偶联剂不敏感部分是平衡态HOH交换中的中间Pi,即与ATP水解形成的Pi在从催化位点释放Pi之前发生的交换。介质Pi与HOH的交换对解偶联剂的敏感性与平衡态ATP交换和净氧化磷酸化中的Pi相同,这表明将介质Pi带入反应状态需要解偶联剂敏感的激发态,可能是跨膜电位或质子梯度。催化位点处的共价键形成和断裂步骤(ADP + Pi ⇌ ATP + HOH)似乎对解偶联剂相对不敏感。因此,就解偶联剂消散跨膜质子动力而言,这种力不太可能通过Pi氧的直接质子化来驱动ATP形成。当仅添加Pi和ADP并且通过腺苷酸激酶从添加的ADP形成ATP以及随后的ATP水解被充分阻断时,无法观察到平衡态HOH交换中的Pi,这表明这种交换需要通过ATP结合和裂解来激发。这种解偶联剂不敏感的激发被认为代表一种构象激发态,可用于可逆地产生伴随ADP和Pi释放的跨膜质子动力。通过改进的程序估计的各种交换速率与催化位点处ATP水解的动态逆转发生的所有氧交换兼容。

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