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Aging-related decrease in liver peroxisomal fatty acid oxidation in control and clofibrate-treated mice. A biochemical study and mechanistic approach.

机译:与衰老相关的对照和氯贝贝特治疗小鼠的肝脏过氧化物酶体脂肪酸氧化减少。生化研究和机制方法。

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Membrane fatty acid composition affects membrane structure and function. Alterations in membrane composition have been reported in old animals and it is now hypothesized that these alterations may contribute to the onset of age-related diseases. Previously, we proposed that peroxisomes might also be involved in these aging-related membrane alterations. In order to extend our previous work, we have assayed acyl-CoA oxidase activity and cyanide-insensitive fatty acid oxidation activity for both arachidonic 20:4(n-6) and docosahexaenoic 22:6(n-3) acids, catalase and urate oxidase activities, microsomal cytochrome P450 content and cytochrome P4504A1 laurate hydroxylase activity in the liver of young and old mice fed either a control or a clofibrate-supplemented diet. Our results suggest a progressive general decrease in peroxisomal function during aging, including a decrease in the fatty acid oxidation pathway that takes place via a specific decrease in acyl-CoA oxidase activity. The aging-related decreasein peroxisomal function is linked to a concomitant decrease in cytochrome P4504A laurate hydroxylase activity in control animals but not in clofibratetreated mice. This suggests aging impairs a mechanism in peroxisome proliferation that is subsequent to the cytochrome P4504A step. Implications of the aging-related peroxisomal fatty acid oxidation decrease on health through possible alterations in membrane composition and function and very long chain fatty acid accumulation are discussed.
机译:膜脂肪酸组成影响膜的结构和功能。据报道,老年动物的膜成分发生了变化,现在人们推测这些变化可能会导致与年龄有关的疾病的发作。以前,我们提出过氧化物酶体也可能与这些衰老相关的膜改变有关。为了扩展我们以前的工作,我们测定了花生四烯酸20:4(n-6)和二十二碳六烯酸22:6(n-3),过氧化氢酶和尿酸盐的酰基辅酶A氧化酶活性和氰化物不敏感的脂肪酸氧化活性。对照饮食或补充氯贝特饮食的年轻和老年小鼠肝脏中的氧化酶活性,微粒体细胞色素P450含量和细胞色素P4504A1月桂酸羟化酶活性。我们的研究结果表明,衰老过程中过氧化物酶体功能的逐渐普遍降低,包括通过酰基辅酶A氧化酶活性的特定降低而导致的脂肪酸氧化途径的降低。与衰老相关的过氧化物酶体功能的降低与对照动物而不是经氯贝特治疗的小鼠的细胞色素P4504A月桂酸酯羟化酶活性的同时降低有关。这表明衰老削弱了细胞色素P4504A步骤后过氧化物酶体增殖的机制。讨论了与衰老有关的过氧化物酶体脂肪酸氧化减少对健康的影响,这可能是由于膜组成和功能的改变以及长链脂肪酸积累引起的。

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