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线粒体中的膜电位和表面电位:亲脂性阳离子的摄取与结合

Membrane potential and surface potential in mitochondria: uptake and binding of lipophilic cations.

作者信息

Rottenberg H

出版信息

J Membr Biol. 1984;81(2):127-38. doi: 10.1007/BF01868977.

Abstract

The uptake and binding of the lipophilic cations ethidium+, tetraphenylphosphonium+ (TPP+), triphenylmethylphosphonium+ (TPMP+), and tetraphenylarsonium+ (TPA+) in rat liver mitochondria and submitochondrial particles were investigated. The effects of membrane potential, surface potentials and cation concentration on the uptake and binding were elucidated. The accumulation of these cations by mitochondria is described by an uptake and binding to the matrix face of the inner membrane in addition to the binding to the cytosolic face of the inner membrane. The apparent partition coefficients between the external medium and the cytosolic surface of the inner membrane (K'o) and the internal matrix volume and matrix face of the inner membrane (K'i) were determined and were utilized to estimate the membrane potential delta psi from the cation accumulation factor Rc according to the relation delta psi = RT/ZF ln [(RcVo - K'o)/(Vi + K'i)] where Vo and Vi are the volume of the external medium and the mitochondrial matrix, respectively, and Rc is the ratio of the cation content of the mitochondria and the medium. The values of delta psi estimated from this equation are in remarkably good agreement with those estimated from the distribution of 86Rb in the presence of valinomycin. The results are discussed in relation to studies in which the membrane potential in mitochondria and bacterial cells was estimated from the distribution of lipophilic cations.

摘要

研究了亲脂性阳离子乙锭⁺、四苯基鏻⁺(TPP⁺)、三苯甲基鏻⁺(TPMP⁺)和四苯基砷⁺(TPA⁺)在大鼠肝脏线粒体和亚线粒体颗粒中的摄取和结合情况。阐明了膜电位、表面电位和阳离子浓度对摄取和结合的影响。线粒体对这些阳离子的积累不仅表现为与内膜胞质面的结合,还包括与内膜基质面的摄取和结合。测定了内膜胞质表面(K'o)与内膜内部基质体积和基质面(K'i)之间的表观分配系数,并根据阳离子积累因子Rc利用关系式δψ = RT/ZF ln [(RcVo - K'o)/(Vi + K'i)]来估算膜电位δψ,其中Vo和Vi分别是外部介质和线粒体基质的体积,Rc是线粒体与介质中阳离子含量的比值。由该方程估算出的δψ值与在缬氨霉素存在下通过⁸⁶Rb分布估算出的值非常吻合。结合从亲脂性阳离子分布估算线粒体和细菌细胞膜电位的研究对结果进行了讨论。

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