ELECTRON AND PROTON TRANSPORT ACROSS THE PLASMA-MEMBRANE

被引:93
作者
CRANE, FL [1 ]
SUN, IL [1 ]
BARR, R [1 ]
LOW, H [1 ]
机构
[1] KAROLINSKA INST, DEPT AGR CHEM, S-10401 STOCKHOLM 60, SWEDEN
关键词
PLASMA MEMBRANE; NADH OXIDASE; TRANSPLASMA MEMBRANE ELECTRON TRANSPORT; PROTON RELEASE; NA+/H+ ANTIPORT; H+ ATPASE; TRANSFERRIN; TRANSFERRIN STIMULATED OXIDASE; ADRIAMYCIN; CISPLATIN; IRON TRANSPORT; BLUE LIGHT EFFECTS; AUXIN; COENZYME Q; TURBO REDUCTASE; VITAMIN K; PROTEIN KINASE; CELL GROWTH CONTROL;
D O I
10.1007/BF00786001
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Transplasma membrane electron transport in both plant and animal cells activates proton release. The nature and components of the electron transport system and the mechanism by which proton release is activated remains to be discovered. Reduced pyridine nucleotides are substrates for the plasma membrane dehydrogenases. Both plant and animal membranes have unusual cyanide-insensitive oxidases so oxygen can be the natural electron acceptor. Natural ferric chelates or ferric transferrin can also act as electron acceptors. Artificial, impermeable oxidants such as ferricyanide are used to probe the activity. Since plasma membranes contain h cytochromes, flavin, iron, and quinones, components for electron transport are present but their participation, except for quinone, has not been demonstrated. Stimulation of electron transport with impermeable oxidants and hormones activates proton release from cells. In plants the electron transport and proton release is stimulated by red or blue light. Inhibitors of electron transport, such as certain antitumor drugs, inhibit proton release. With animal cells the high ratio of protons released to electrons transferred, stimulation of proton release by sodium ions, and inhibition by amilorides indicates that electron transport activates the Na+/H+ antiport. In plants part of the proton release can be achieved by activation of the H+ ATPase. A contribution to proton transfer by protonated electron carriers in the membrane has not been eliminated. In some cells transmembrane electron transport has been shown to cause cytoplasmic pH changes or to stimulate protein kinases which may be the basis for activation of proton channels in the membrane. The redox-induced proton release causes internal and external pH changes which can be related to stimulation of animal and plant cell growth by external, impermeable oxidants or by oxygen.
引用
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页码:773 / 803
页数:31
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