Harris E J
Biochem J. 1968 Sep;109(2):247-51. doi: 10.1042/bj1090247.
The accumulation of some organic anions in the space inaccessible to sucrose of rat liver mitochondria was measured. In untreated mitochondria anions were apparently concentrated from 1mm applied concentration by between five- and 22-fold, depending on their charge. After depletion of endogenous reserves either with uncoupling agent or with oligomycin uptakes were decreased. The accumulation of citrate was restored by combinations of a dicarboxylic acid (malate, succinate, maleate or meso-tartrate) and energy. The energy could either be provided by oxidation of a suitable dicarboxylic acid or from ascorbate in the presence of tetramethylphenylenediamine, or from ATP. The restoration of citrate uptake is not necessarily accompanied by a gain of K(+), but a cation- and energy-linked citrate uptake can be induced with valinomycin. When citrate is added to mitochondria in the presence of malate the latter is competitively displaced. The anion accumulation could arise from an internal energy-linked positive potential.
对大鼠肝线粒体中蔗糖无法进入的空间内一些有机阴离子的积累情况进行了测定。在未处理的线粒体中,阴离子从1mM的外加浓度开始明显浓缩,浓缩倍数在5至22倍之间,这取决于它们的电荷。在用解偶联剂或寡霉素耗尽内源性储备后,摄取量会降低。柠檬酸的积累可通过二羧酸(苹果酸、琥珀酸、马来酸或内消旋酒石酸)与能量的组合来恢复。能量可以由合适的二羧酸氧化提供,或者在四甲基对苯二胺存在下由抗坏血酸提供,或者由ATP提供。柠檬酸摄取的恢复不一定伴随着钾离子的增加,但缬氨霉素可诱导阳离子和能量偶联的柠檬酸摄取。当在苹果酸存在下向线粒体中添加柠檬酸时,后者会被竞争性取代。阴离子积累可能源于内部能量偶联的正电位。