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肾皮质中的糖异生。苹果酸在各区间的流动。

Gluconeogenesis in the kidney cortex. Flow of malate between compartments.

作者信息

Rognstad R

出版信息

Biochem J. 1970 Feb;116(3):493-502. doi: 10.1042/bj1160493.

Abstract
  1. Kidney-cortex slices from starved rats were incubated with l-[U-(14)C]lactate or l-[U-(14)C]malate plus unlabelled acetate and the specific radioactivity of the glucose formed was determined. In parallel experiments the specific radioactivity of the glucose formed from [1-(14)C]acetate plus unlabelled l-lactate and l-malate was determined. 2. By analytical methods the major products formed from the substrates were measured. The glucose formed was purified by paper chromatography for determination of specific radioactivity. 3. The specific radioactivity of the glucose formed from l-[U-(14)C]lactate agrees with predictions of a model based on interaction of the gluconeogenic and the oxidative pathways. 4. The specific radioactivity of the glucose formed from l-[U-(14)C]malate agrees with the predicted value if rapid malate exchange between the cytosol and mitochondria is assumed. 5. The rate of malate exchange between compartments was estimated to be rapid and at least several times the rate of glucose formation. 6. The specific radioactivity of the glucose formed from [1-(14)C]acetate plus unlabelled l-lactate or l-malate agrees with the predictions from the model, again assuming rapid malate exchange between compartments. 7. Malate exchange between compartments together with reversible malate dehydrogenase activity in the mitochondria and cytosol also tends to equilibrate isotopically the NADH pool in these compartments. (3)H from compounds such as l-[2-(3)H]lactate, which form NAD(3)H in the cytosol, appears in part in water; and (3)H from dl-beta-hydroxy[3-(3)H]butyrate, which forms NAD(3)H in the mitochondria, appears in part in glucose, largely on C-4.
摘要
  1. 将饥饿大鼠的肾皮质切片与 l-[U-(14)C]乳酸或 l-[U-(14)C]苹果酸加未标记的乙酸一起孵育,然后测定生成的葡萄糖的比放射性。在平行实验中,测定了由 [1-(14)C]乙酸加未标记的 l-乳酸和 l-苹果酸生成的葡萄糖的比放射性。2. 通过分析方法测量了由底物形成的主要产物。将生成的葡萄糖通过纸色谱法纯化以测定比放射性。3. 由 l-[U-(14)C]乳酸生成的葡萄糖的比放射性与基于糖异生途径和氧化途径相互作用的模型预测相符。4. 如果假设胞质溶胶和线粒体之间苹果酸快速交换,由 l-[U-(14)C]苹果酸生成的葡萄糖的比放射性与预测值相符。5. 各部分之间苹果酸的交换速率估计很快,至少是葡萄糖生成速率的几倍。6. 由 [1-(14)C]乙酸加未标记的 l-乳酸或 l-苹果酸生成的葡萄糖的比放射性与模型预测相符,同样假设各部分之间苹果酸快速交换。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0856/1185387/6f24d9be76de/biochemj00685-0176-a.jpg

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