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吡啶核苷酸水平的变化会改变分离线粒体中的氧气消耗和线粒体外磷酸盐:一项31P-NMR和NAD(P)H荧光研究。

Changes in pyridine nucleotide levels alter oxygen consumption and extra-mitochondrial phosphates in isolated mitochondria: a 31P-NMR and NAD(P)H fluorescence study.

作者信息

Koretsky A P, Balaban R S

机构信息

National Heart, Lung, and Blood Institute, Bethesda, MD 20892.

出版信息

Biochim Biophys Acta. 1987 Oct 7;893(3):398-408. doi: 10.1016/0005-2728(87)90092-2.

DOI:10.1016/0005-2728(87)90092-2
PMID:2888484
Abstract

Isolated rat-liver mitochondria were used to study the relation between mitochondrial NADH levels, oxygen consumption (QO2), and extra-mitochondrial phosphates. Alterations in NADH and QO2 were accomplished by incubating mitochondria with different substrates or varying amounts of exogenous ATPase while monitoring QO2 and NAD(P)H fluorescence. Two sets of conditions were studied: (1) in the presence of excess ADP and inorganic phosphate, an increase in NAD(P)H fluorescence was associated with a linear increase in QO2; (2) when QO2 was driven by the steady-state hydrolysis of ATP by exogenous ATPase, increases in QO2 were associated with proportional decreases in NAD(P)H fluorescence. For all substrates tested this relation was linear; however, the slope was substrate dependent. Different substrates were able to maintain different NAD(P)H levels at the same QO2. To investigate this further, effects of changing substrates at constant QO2 on NAD(P)H and extra-mitochondrial phosphates were determined. Addition of glutamate + malate to mitochondria respiring on citrate caused a 50% increase in NAD(P)H fluorescence, a 41% decrease in ADP, and a 30% decrease in inorganic phosphate. Similar changes for the substrate jump, pyruvate + malate to glutamate + malate were found. Finally, it was determined that a linear relation holds between increases in NAD(P)H fluorescence and increases in QO2 when substrates were varied at constant, physiologic levels of extra-mitochondrial ADP. These results indicate that QO2 depends on NAD(P)H levels as well as on extra-mitochondrial phosphates over a wide range of respiratory rates.

摘要

分离的大鼠肝脏线粒体用于研究线粒体烟酰胺腺嘌呤二核苷酸(NADH)水平、氧气消耗(QO2)和线粒体外磷酸盐之间的关系。通过将线粒体与不同底物或不同量的外源性ATP酶一起孵育,同时监测QO2和烟酰胺腺嘌呤二核苷酸(磷酸)[NAD(P)H]荧光,来实现NADH和QO2的改变。研究了两组条件:(1)在存在过量二磷酸腺苷(ADP)和无机磷酸盐的情况下,NAD(P)H荧光的增加与QO2的线性增加相关;(2)当QO2由外源性ATP酶催化ATP的稳态水解驱动时,QO2的增加与NAD(P)H荧光的成比例降低相关。对于所有测试的底物,这种关系都是线性的;然而,斜率取决于底物。不同的底物能够在相同的QO2下维持不同的NAD(P)H水平。为了进一步研究这一点,测定了在恒定QO2下改变底物对NAD(P)H和线粒体外磷酸盐的影响。向以柠檬酸盐为呼吸底物的线粒体中添加谷氨酸+苹果酸,导致NAD(P)H荧光增加50%,ADP减少41%,无机磷酸盐减少30%。发现从丙酮酸+苹果酸到谷氨酸+苹果酸的底物转换也有类似变化。最后,确定当在恒定的生理水平的线粒体外ADP条件下改变底物时,NAD(P)H荧光的增加与QO2的增加之间存在线性关系。这些结果表明,在广泛的呼吸速率范围内,QO2既取决于NAD(P)H水平,也取决于线粒体外磷酸盐。

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