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用对四苯基鏻敏感的电极测量线粒体的膜电位以及稳态下质子电化学势与磷酸化势之间的关系。

Membrane potential of mitochondria measured with an electrode sensitive to tetraphenyl phosphonium and relationship between proton electrochemical potential and phosphorylation potential in steady state.

作者信息

Kamo N, Muratsugu M, Hongoh R, Kobatake Y

出版信息

J Membr Biol. 1979 Aug;49(2):105-21. doi: 10.1007/BF01868720.

Abstract

The membrane potential of mitochondria was estimated from the accumulation of tetraphenyl phosphonium (TPP+), which was determined with the TPP+-selective electrode developed in the present study. The preparation and some operational parameters of the electrode were described. The kinetics for uptake by mitochondria of TPP+ and DDA+ (dibenzyldimethyl ammonium) were analyzed, and it was found that TPP+ permeated the mitochondrial membrane about 15 times faster than DDA+. The final amounts of accumulation of TPP+ and DDA+ by mitochondria were approximately equal. For the state-4 mitochondria, the membrane potential was about 180 mV (interior negative). Simultaneous measurements of TPP+-uptake and oxygen consumption showed that the transition between states 3 and 4 was detectable by use of the TPP+-electrode. After the TPP+-electrode showed that state-4 was reached, the extra-mitochondrial phosphorylation potential was measured. The difference in pH across the membrane was measured from the distribution of permeant anion, acetate, so as to calculate the proton electrochemical potential. The ratio of extra-mitochondrial phosphorylation potential to proton electro-chemical potential, n was close to 3. This value of n was also found to be 3 when ATP was hydrolyzed under the condition that the respiratory chain was arrested. The implication that n = 3 was discussed.

摘要

线粒体膜电位是通过四苯基鏻(TPP+)的积累来估计的,TPP+的积累量是用本研究中开发的TPP+选择性电极测定的。描述了该电极的制备方法和一些操作参数。分析了线粒体摄取TPP+和DDA+(二苄基二甲基铵)的动力学,发现TPP+透过线粒体膜的速度比DDA+快约15倍。线粒体对TPP+和DDA+的最终积累量大致相等。对于状态4的线粒体,膜电位约为180 mV(内膜为负)。同时测量TPP+摄取和氧气消耗表明,使用TPP+电极可检测到状态3和状态4之间的转变。在TPP+电极显示达到状态4后,测量线粒体外磷酸化电位。通过渗透性阴离子乙酸盐的分布测量膜两侧的pH差异,从而计算质子电化学势。线粒体外磷酸化电位与质子电化学势的比值n接近3。当呼吸链被阻断时ATP水解的条件下,n的值也被发现为3。讨论了n = 3的含义。

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