Masters C, Crane D
Mol Cell Biochem. 1984 Nov;65(1):23-35. doi: 10.1007/BF00226016.
Recent investigations into the role of peroxisomes in mammalian lipid metabolism have employed double isotope methodologies to examine the influence of peroxisomal agents on lipid turnover in the liver and extra hepatic tissues of the living animal. The action of these agents, all of which caused extensive changes in the flux of lipid metabolism in the treated animals, may best be viewed in relation to their effects on the common pathway of fatty acid oxidation in peroxisomes. Clofibrate, for example, acts through induction of peroxisomal oxidases and catalase; glycolate and ethanol through activation of this pathway; and aminotriazole and allylisopropylacetamide through inhibition of the catalase step in the sequence. The data from these studies provide support for the concept of an important contributory and regulatory role of peroxisomes in relation to the overall balance of lipid metabolism, and emphasize that these organelles play a significant role in the oxidation of common fatty acids, as well as a potential for the elimination of fatty acids that are poorly oxidized by mitochondria. Additionally, the data raise intriguing questions on the extension of peroxisomal influence to include phospholipid metabolism and the substantial degree of inter-tissue communication which is involved in the balance of lipid metabolism in the whole animal.
最近关于过氧化物酶体在哺乳动物脂质代谢中作用的研究采用了双同位素方法,以研究过氧化物酶体相关因子对活体动物肝脏和肝外组织脂质周转的影响。所有这些因子都会使受试动物的脂质代谢通量发生广泛变化,其作用最好从它们对过氧化物酶体中脂肪酸氧化共同途径的影响来观察。例如,氯贝丁酯通过诱导过氧化物酶体氧化酶和过氧化氢酶起作用;乙醇酸和乙醇通过激活该途径起作用;而氨基三唑和烯丙基异丙基乙酰胺则通过抑制该序列中的过氧化氢酶步骤起作用。这些研究的数据支持了过氧化物酶体在脂质代谢总体平衡中具有重要促进和调节作用的概念,并强调这些细胞器在常见脂肪酸氧化中发挥着重要作用,以及具有消除线粒体氧化能力较差的脂肪酸的潜力。此外,这些数据还引发了一些有趣的问题,即过氧化物酶体的影响是否扩展到包括磷脂代谢,以及在整个动物脂质代谢平衡中涉及的组织间大量通讯。