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幼鼠暴露于低氧环境期间糖异生的调节

Regulation of gluconeogenesis during exposure of young rats to hypoxic conditions.

作者信息

Ballard F J

出版信息

Biochem J. 1971 Jan;121(2):169-78. doi: 10.1042/bj1210169.

Abstract
  1. Two-day-old rats were exposed at constant temperature to atmospheres containing air and nitrogen with the air content varied in steps from 100 to 0%. By using this system of graded hypoxia a comparison was made between rates of gluconeogenesis from lactate, serine and aspartate in the whole animal and the concentrations of several liver metabolites. 2. Gluconeogenesis, expressed as the percentage incorporation of labelled isotope into glucose plus glycogen, proceeds linearly for 30min when the animals are incubated in a normal air atmosphere, but is completely suppressed if the atmosphere is 100% nitrogen. 3. Preincubation of animals for between 5 and 30min under an atmosphere containing 19% air results in the attainment of a new steady state with respect to gluconeogenesis and hepatic concentrations of ATP, ADP, AMP, lactate, pyruvate, beta-hydroxybutyrate and acetoacetate. 4. When lactate (100mumol), aspartate (20mumol) or serine (20mumol) was injected, it was shown that the more severe the hypoxia the greater the depression of gluconeogenesis. Under conditions when gluconeogenesis was markedly inhibited there were no changes in the degree of phosphorylation of hepatic adenine nucleotides, but free [NAD(+)]/[NADH] ratios fell in both cytosol and mitochondrial compartments of the liver cell. 5. Measurements of total liver NAD(+) and NADH showed that the concentrations of these nucleotide coenzymes changed less with anoxia, in comparison with the concentration ratio of free coenzymes. 6. Calculations showed that the difference in NAD(+)-NADH redox potentials between mitochondrial and cytosol compartments increased with the severity of hypoxia. 7. From the constancy of the concentrations of adenine nucleotides it is concluded that liver of hypoxic rats can conserve ATP by lowering the rate of ATP utilization for gluconeogenesis. Gluconeogenesis may be regulated in turn by the changes in mitochondrial and cytosol redox state.
摘要
  1. 两天大的大鼠在恒温条件下暴露于含有空气和氮气的大气环境中,其中空气含量从100%逐步变化至0%。通过使用这种分级低氧系统,对全动物体内由乳酸、丝氨酸和天冬氨酸进行糖异生的速率以及几种肝脏代谢物的浓度进行了比较。2. 以标记同位素掺入葡萄糖加糖原的百分比表示的糖异生,当动物在正常空气环境中孵育时,在30分钟内呈线性进行,但如果大气环境为100%氮气,则完全受到抑制。3. 将动物在含19%空气的大气环境下预孵育5至30分钟,会导致在糖异生以及肝脏中ATP、ADP、AMP、乳酸、丙酮酸、β-羟基丁酸和乙酰乙酸的浓度方面达到新的稳态。4. 当注射乳酸(100μmol)、天冬氨酸(20μmol)或丝氨酸(20μmol)时,结果表明低氧越严重,糖异生的抑制程度越大。在糖异生明显受抑制的条件下,肝脏腺嘌呤核苷酸的磷酸化程度没有变化,但肝细胞的胞质溶胶和线粒体部分中游离的[NAD(+)]/[NADH]比值均下降。5. 对肝脏总NAD(+)和NADH的测量表明,与游离辅酶的浓度比相比,这些核苷酸辅酶的浓度在缺氧时变化较小。6. 计算表明,线粒体和胞质溶胶部分之间的NAD(+)-NADH氧化还原电位差随着低氧严重程度的增加而增大。7. 根据腺嘌呤核苷酸浓度的恒定得出结论,缺氧大鼠的肝脏可通过降低用于糖异生的ATP利用率来保存ATP。糖异生可能反过来受线粒体和胞质溶胶氧化还原状态变化的调节。

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