首页> 美国卫生研究院文献>Biochemical Journal >Quantitative analysis of intermediary metabolism in rat hepatocytes incubated in the presence and absence of ethanol with a substrate mixture including ketoleucine.
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Quantitative analysis of intermediary metabolism in rat hepatocytes incubated in the presence and absence of ethanol with a substrate mixture including ketoleucine.

机译:定量分析在存在和不存在乙醇的情况下与包括酮咯氨酸在内的底物混合物孵育的大鼠肝细胞中的中间代谢。

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摘要

Hepatocytes isolated from livers of fed rats were incubated with a mixture of glucose (10 mM), ribose (1.0 mM), acetate (1.25 mM), alanine (3.5 mM), glutamate (2.0 mM), aspartate (2.0 mM), 4-methyl-2-oxovaleric acid (ketoleucine) (3.0 mM), and, in paired flasks, 10 mM-ethanol. One substrate was 14C-radiolabelled in any given incubation. Incorporation of 14C into glucose, glycogen, CO2, lactate, alanine, aspartate, glutamate, acetate, urea, lipid glycerol, fatty acids and the 1- and 2,3,4-positions of ketone bodies was measured after 20 and 40 min of incubation under quasi-steady-state conditions. Data were analysed with the aid of a realistic structural metabolic model. In each of the four conditions examined, there were approx. 77 label incorporation measurements and several measurements of changes in metabolite concentrations. The considerable excess of measurements over the 37 independent flux parameters allowed for a stringent test of the model. A satisfactory fit to these data was obtained for each condition. There were large bidirectional fluxes along the gluconeogenic/glycolytic pathways, with net gluconeogenesis. Rates of ureagenesis, oxygen consumption and ketogenesis were high under all four conditions studied. Oxygen utilization was accurately predicted by three of the four models. There was complete equilibration between mitochondrial and cytosolic pools of acetate and of CO2, but for several of the metabolic conditions, two incompletely equilibrated pools of mitochondrial acetyl-CoA and oxaloacetate were required. Ketoleucine was utilized at a rate comparable to that reported by others in perfused liver and entered the mitochondrial pool of acetyl-CoA directly associated with ketone body formation. Ethanol, which was metabolized at rates comparable to those in vivo, caused relatively few changes in overall flux patterns. Several effects related to the increased NADH/NAD+ ratio were observed. Pyruvate dehydrogenase was completely inhibited and the ratio of acetoacetate to 3-hydroxybutyrate was decreased; flux through glutamate dehydrogenase, the citric acid cycle, and ketoleucine dehydrogenase were, however, only slightly inhibited. Net production of ATP occurred in all conditions studied and was increased by ethanol. Futile cycling was quantified at the glucose/glucose 6-phosphate, glycogen/glucose 6-phosphate, fructose 6-phosphate/fructose 1,6-bis-phosphate, and phosphoenolpyruvate/pyruvate/oxaloacetate substrate cycles. Cycling at these four loci consumed about 22% of cellular ATP production in control hepatocytes and 14% in ethanol-treated cells.
机译:从饲喂大鼠肝脏分离的肝细胞与葡萄糖(10 mM),核糖(1.0 mM),乙酸盐(1.25 mM),丙氨酸(3.5 mM),谷氨酸(2.0 mM),天冬氨酸(2.0 mM),4的混合物孵育-甲基-2-氧代戊酸(酮亮氨酸)(3.0 mM),在成对的烧瓶中加入10 mM乙醇。在任何给定的孵育中,将一种底物进行14 C放射放射。在20和40分钟的内毒素作用后,测定14C掺入葡萄糖,糖原,CO2,乳酸,丙氨酸,天冬氨酸,谷氨酸,乙酸盐,尿素,脂质甘油,脂肪酸和酮体的1和2,3,4-位。在准稳态条件下孵育。借助于现实的结构代谢模型分析数据。在所检查的四个条件中的每一个中,大约有一个。 77种标记掺入测量和代谢物浓度变化的几种测量。超过37个独立磁通参数的大量测量结果可以对模型进行严格测试。对于每种条件,均获得了对这些数据的满意拟合。沿糖异生/糖酵解途径存在大量双向通量,并具有净糖异生作用。在所研究的所有四个条件下,尿素生成率,耗氧量和生酮率均很高。四个模型中的三个模型可准确预测氧气利用率。线粒体和乙酸和CO2的线粒体池之间存在完全平衡,但对于某些代谢条件,需要两个不完全平衡的线粒体乙酰辅酶A和草酰乙酸池。酮亮氨酸的使用率可与他人在灌注肝脏中报道的率相当,并进入与酮体形成直接相关的乙酰辅酶A线粒体库。乙醇以与体内相当的速率代谢,导致整体通量模式的变化相对较小。观察到与增加的NADH / NAD +比例有关的几种效应。丙酮酸脱氢酶被完全抑制,乙酰乙酸酯与3-羟基丁酸酯的比例降低;通过谷氨酸脱氢酶的通量,柠檬酸循环和酮亮氨酸脱氢酶仅受到轻微抑制。在所有研究的条件下,ATP的净产量均发生,并且通过乙醇增加。在葡萄糖/葡萄糖6-磷酸酯,糖原/葡萄糖6-磷酸酯,果糖6-磷酸酯/果糖1,6-双磷酸酯和磷酸烯醇丙酮酸/丙酮酸/草酰乙酸底物循环中定量无效的循环。在这四个基因座处循环消耗对照肝细胞中约22%的细胞ATP产生和乙醇处理细胞中约14%的消耗。

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