Katz J
Am J Physiol. 1985 Apr;248(4 Pt 2):R391-9. doi: 10.1152/ajpregu.1985.248.4.R391.
A mitochondrial model of gluconeogenesis and the tricarboxylic acid cycle, where pyruvate is metabolized via pyruvate carboxylase and pyruvate dehydrogenase, and pyruvate kinase is examined. The effect of the rate of tricarboxylic acid flux and the rates of the three reactions of pyruvate metabolism on the labeling patterns from [14C]pyruvate and [24C]acetate are analyzed. Expressions describing the specific radioactivities and 14C distribution in glucose as a function of these rates are derived. Specific radioactivities and isotopic patterns depend markedly on the ratio of the rates of pyruvate carboxylation and decarboxylation to the rate of citrate synthesis, but the effect of phosphoenolpyruvate hydrolysis is minor. The effects of these rates on 1) specific radioactivity of phosphoenolpyruvate, 2) labeling pattern in glucose, and 3) contribution of pyruvate, acetyl-coenzyme A, and CO2 to glucose carbon are illustrated. To determine the contribution of lactate or alanine to gluconeogenesis, experiments with two compounds labeled in different carbons are required. Methods in current use to correct for the dilution of 14C in gluconeogenesis from [14C]pyruvate are shown to be erroneous. The experimental design and techniques to determine gluconeogenesis from 14C-labeled precursors are presented and illustrated with numerical examples.
一种糖异生作用和三羧酸循环的线粒体模型,其中丙酮酸通过丙酮酸羧化酶和丙酮酸脱氢酶进行代谢,并对丙酮酸激酶进行了研究。分析了三羧酸通量速率以及丙酮酸代谢的三个反应速率对[14C]丙酮酸和[24C]乙酸盐标记模式的影响。推导了描述葡萄糖中比放射性和14C分布作为这些速率函数的表达式。比放射性和同位素模式显著取决于丙酮酸羧化和脱羧速率与柠檬酸合成速率的比值,但磷酸烯醇丙酮酸水解的影响较小。阐述了这些速率对1)磷酸烯醇丙酮酸的比放射性、2)葡萄糖中的标记模式以及3)丙酮酸、乙酰辅酶A和CO2对葡萄糖碳的贡献的影响。为了确定乳酸或丙氨酸对糖异生作用的贡献,需要用在不同碳原子上标记的两种化合物进行实验。目前用于校正[14C]丙酮酸糖异生作用中14C稀释的方法被证明是错误的。介绍了从14C标记前体确定糖异生作用的实验设计和技术,并用数值示例进行了说明。