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空腹时肝脂肪酸平衡的最小模型:在 PPARα 缺乏型小鼠中的应用。

A minimal model for hepatic fatty acid balance during fasting: application to PPAR alpha-deficient mice.

机构信息

INRA, UMR 1079 Systèmes d'Elevage, Nutrition Animale et Humaine, F-35590 Saint Gilles, France.

出版信息

J Theor Biol. 2009 Nov 21;261(2):266-78. doi: 10.1016/j.jtbi.2009.07.025. Epub 2009 Jul 25.

Abstract

The purpose of this study is to identify the hierarchy of importance amongst pathways involved in fatty acid (FA) metabolism and their regulators in the control of hepatic FA composition. A modeling approach was applied to experimental data obtained during fasting in PPARalpha knockout (KO) mice and wild-type mice. A step-by-step procedure was used in which a very simple model was completed by additional pathways until the model fitted correctly the measured quantities of FA in the liver. The resulting model included FA uptake by the liver, FA oxidation, elongation and desaturation of FA, which were found active in both genotypes during fasting. From the model analysis we concluded that PPARalpha had a strong effect on FA oxidation. There were no indications that this effect changes during the fasting period, and it was thus considered to be constant. In PPARalpha KO mice, FA uptake was identified as the main pathway responsible for FA variation in the liver. The models showed that FA were oxidized at a constant and small rate, whereas desaturation of FA also occurred during fasting. The latter observation was rather unexpected, but was confirmed experimentally by the measurement of delta-6-desaturase mRNA using real-time quantitative PCR (QPCR). These results confirm that mathematical models can be a useful tool in identifying new biological hypotheses and nutritional routes in metabolism.

摘要

本研究旨在确定脂肪酸(FA)代谢途径及其调控因子在肝脏 FA 组成控制中的重要性层次。采用建模方法对 PPARalpha 基因敲除(KO)小鼠和野生型小鼠禁食期间获得的实验数据进行分析。采用逐步的方法,首先构建一个非常简单的模型,然后逐步添加其他途径,直到模型正确拟合肝脏中 FA 的测量值。所得模型包括肝脏中 FA 的摄取、FA 的氧化、延伸和去饱和,在禁食期间这两种途径在两种基因型中均活跃。从模型分析中我们得出结论,PPARalpha 对 FA 氧化有很强的影响。没有迹象表明这种影响在禁食期间发生变化,因此被认为是恒定的。在 PPARalpha KO 小鼠中,FA 摄取被确定为肝脏中 FA 变化的主要途径。模型表明,FA 以恒定的小速率氧化,而 FA 的去饱和也在禁食期间发生。后一种观察结果出人意料,但通过实时定量 PCR(QPCR)测量 delta-6-去饱和酶 mRNA 得到了实验验证。这些结果证实,数学模型可以成为鉴定代谢中新的生物学假设和营养途径的有用工具。

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