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通过人工施加的电化学质子梯度在牛心亚线粒体颗粒中合成三磷酸腺苷。

Synthesis of adenosine triphosphate by an artificially imposed electrochemical proton gradient in bovine heart submitochondrial particles.

作者信息

Thayer W S, Hinkle P C

出版信息

J Biol Chem. 1975 Jul 25;250(14):5330-5.

PMID:237916
Abstract

Submitochondrial particles subjected to an artificially imposed electrochemical proton gradient consisting of a pH gradient (acid to base transition) and membrane potential (low to high K-+ transition in the presence of valinomycin) catalyzed the net synthesis of 2.5 nmol of [-32P]ATP per mg of protein from ADP and 32-Pi. Optimal reaction conditions included incubation of submitochondrial particles in malonate at pH 5.0 with valinomycin in the absence of added K-+, followed by a rapid transition to pH 7.5 and 100 mM K-+. ATP synthesis continued for about 6 s and was sensitive to uncouplers or oligomycin but insensitive to inhibitors of electron transport. Lower amounts of ATP were formed by either the pH gradient (25%) of K-+ gradient (15%) alone. These results demonstrate that an electrochemical gradient of protons can drive the synthesis of ATP by reversal of the proton-translocating ATPase independent of electron transport.

摘要

受到由pH梯度(从酸性到碱性转变)和膜电位(在缬氨霉素存在下K⁺从低到高转变)组成的人工施加的电化学质子梯度作用的亚线粒体颗粒,每毫克蛋白质能催化从ADP和³²-Pi净合成2.5 nmol的[-³²P]ATP。最佳反应条件包括在pH 5.0的丙二酸中、无添加K⁺且有缬氨霉素的情况下孵育亚线粒体颗粒,随后快速转变至pH 7.5和100 mM K⁺。ATP合成持续约6秒,对解偶联剂或寡霉素敏感,但对电子传递抑制剂不敏感。单独的pH梯度(25%)或K⁺梯度(15%)形成的ATP量较少。这些结果表明,质子的电化学梯度可通过质子转运ATP酶的逆转驱动ATP合成,而与电子传递无关。

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