United States Department of Agriculture, Science and Education Administration, Agricultural Research, Departments of Crop Science and Botany, North Carolina State University, Raleigh, North Carolina 27650.
Plant Physiol. 1979 Jul;64(1):115-9. doi: 10.1104/pp.64.1.115.
The permeability properties of the inner membrane of mung bean mitochondria were studied by osmotic swelling techniques. Rapid mitochondrial swelling was observed in isotonic ammonium phosphate, which indicated that an active phosphate/hydroxyl antiporter was present. The phosphate carrier was specifically inhibited by sulfhydryl reagents. Mitochondria did not swell in isotonic ammonium salts of malate, succinate, or fumarate, either in the presence or absence of 10 millimolar phosphate. Additionally, no swelling was observed in ammonium citrate upon addition of malate plus phosphate. Consequently, no evidence was obtained with the osmotic swelling technique for a coupled exchange of phosphate for dicarboxylic acids across the membrane.On the basis of valinomycin-induced swelling in potassium salts, suggestions were obtained that chloride, sulfate, and phosphate anions permeated more rapidly than acetate anions. Sulfhydryl reagents increased the rate of valinomycin-induced swelling in potassium phosphate, but had no effect on swelling in potassium acetate.Tributyltin induced a low rate of mitochondrial swelling in KCl in the absence of substrates, which indicated the presence of a low activity (Na(+)) K(+)/H(+) antiporter in the membrane. In the presence of NADH, rapid swelling, followed by a contraction, was observed upon addition of tributyltin. Swelling was insensitive to uncouplers, whereas contraction was uncoupler-sensitive. O(2) uptake (state 4) was greatest (3- to 4-fold stimulation) during the contraction phase, which indicated that the observed contraction was coupled to the pH gradient formed during electron transport. The results suggested that energization increased the activity of the (Na(+)) K(+)/H(+) antiporter in the inner mitochondrial membrane.
豆包,我需要你将这段英文翻译成中文:
用渗透膨胀技术研究了绿豆线粒体内膜的透性性质。在等渗磷酸铵中观察到线粒体迅速膨胀,这表明存在一种活跃的磷酸/羟自由基反向转运蛋白。磷酸载体被巯基试剂特异性抑制。在线粒体中,即使存在 10 毫摩尔磷酸盐,在等渗苹果酸、琥珀酸或延胡索酸盐中也不会发生膨胀。此外,当在苹果酸加磷酸盐中加入柠檬酸盐时,也不会观察到膨胀。因此,用渗透膨胀技术没有得到证据表明在膜上存在磷酸与二羧酸的偶联交换。
根据缬氨霉素诱导的钾盐膨胀,表明氯离子、硫酸根离子和磷酸根离子比醋酸根离子渗透得更快。巯基试剂增加了缬氨霉素诱导的磷酸钾膨胀的速率,但对醋酸钾膨胀没有影响。
三丁基锡在没有底物的情况下在 KCl 中引起线粒体的低膨胀率,这表明膜中存在一种低活性的(Na(+)) K(+)/H(+)反向转运蛋白。在 NADH 的存在下,加入三丁基锡后迅速膨胀,随后收缩。膨胀对解偶联剂不敏感,而收缩对解偶联剂敏感。O(2)摄取(状态 4)在收缩阶段最大(3-4 倍刺激),这表明观察到的收缩与电子传递过程中形成的 pH 梯度有关。结果表明,能量供应增加了线粒体内膜中(Na(+)) K(+)/H(+)反向转运蛋白的活性。