首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Paired moving charges in mitochondrial energy coupling. II. Universality of the principles for energy coupling in biological systems.
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Paired moving charges in mitochondrial energy coupling. II. Universality of the principles for energy coupling in biological systems.

机译:线粒体能量耦合中的成对移动电荷。二。生物系统中能量耦合原理的普遍性。

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摘要

The thesis is developed that an acceptable model of biological energy coupling must have universal application. The paired moving charge model of mitochondrial energy coupling is examined from the standpoint of this thesis. Fundamental to this model is the notion that energy coupling involves interaction between paired uncompensated charged species in two vectorially aligned and spatially separated reaction centers. The two charge-separating devices are assumed to be the electron transfer chain (in chloroplast and mitochondria) and intrinsic ionophores (in all transducing organelles and kinases). The universality of the ionophore principle becomes then the crucial test of the validity of the paired moving charge model. The multiple facets of ionophore-mediated couples processes are explored, e.g., coupled hydrolysis of ATP, hormonal control of ion movements, and active transport.
机译:论文提出了一种可接受的生物能量耦合模型必须具有普遍的应用价值。从本文的角度出发,研究了线粒体能量耦合的成对运动电荷模型。该模型的基本概念是能量耦合包括两个在向量上对齐且空间上分开的反应中心中成对的未补偿带电物种之间的相互作用。假定两个电荷分离装置是电子传输链(在叶绿体和线粒体中)和固有离子载体(在所有转导细胞器和激酶中)。离子载体原理的普遍性成为配对运动电荷模型有效性的关键检验。探索了离子载体介导的偶联过程的多个方面,例如ATP的偶联水解,离子运动的激素控制和主动转运。

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