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降血脂脂肪酸对大鼠骨骼肌、心脏和肝脏中线粒体增殖以及肉碱棕榈酰转移酶和脂肪酰辅酶A氧化酶基因表达的影响

Proliferation of mitochondria and gene expression of carnitine palmitoyltransferase and fatty acyl-CoA oxidase in rat skeletal muscle, heart and liver by hypolipidemic fatty acids.

作者信息

Totland G K, Madsen L, Klementsen B, Vaagenes H, Kryvi H, Frøyland L, Hexeberg S, Berge R K

机构信息

Department of Zoology, University of Bergen, Norway.

出版信息

Biol Cell. 2000 Aug;92(5):317-29. doi: 10.1016/s0248-4900(00)01077-7.

Abstract

Morphological and biochemical effects were induced at the subcellular level in the skeletal muscle, heart and liver of male rats as a result of feeding with EPA, DHA, and 3-thia fatty acids. The 3-thia fatty acid, tetradecylthioacetic acid (TTA) and EPA induced mitochondrial growth in type I muscle fibers in both the diaphragm and soleus muscle, and the size distribution of mitochondrial areas followed a similar pattern. Only the 3-thia fatty acid induced mitochondrial growth in type II muscle fibers. The mean area occupied by the mitochondria and the size distribution of mitochondrial areas in both fiber types were highly similar in DHA-treated and control animals. Only the 3-thia fatty acid increased the gene-expression of carnitine palmitoyltransferase (CPT)-II in the diaphragm. In the heart, however, the gene expression decreased. In hepatocytes an increase in the mean size of mitochondria was observed after EPA treatment, concomitant with an increase in mitochondrial CPT-II gene expression. Administration of 2-methyl-substituted EPA (methyl-EPA) induced a higher rate of growth of mitochondria than EPA. At the peroxisomal level in the hepatocytes a 3-thia fatty acid, EPA, and DHA increased the areal fraction concomitant with the induction of gene expression of peroxisomal fatty acyl-CoA oxidase (FAO). In the diaphragm, mRNA levels of FAO were not affected by EPA or DHA treatment, whereas gene expression was significantly increased after 3-thia fatty acid treatment. In the heart, both 3-thia fatty acid, EPA and DHA tended to decrease the levels of FAO mRNA. The areal fraction of fat droplets in all three tissue types was significantly lower in the groups treated with 3-thia fatty acid. In the group treated with EPA a lower areal fraction of fat droplets was observed, while the DHA group was similar to the control. This indicates that EPA and DHA have different effects on mitochondrial biogenesis.

摘要

雄性大鼠喂食 EPA、DHA 和 3-硫代脂肪酸后,在骨骼肌、心脏和肝脏的亚细胞水平上诱导了形态学和生化效应。3-硫代脂肪酸、十四烷基硫代乙酸(TTA)和 EPA 诱导膈肌和比目鱼肌中 I 型肌纤维的线粒体生长,线粒体面积的大小分布遵循相似模式。只有 3-硫代脂肪酸能诱导 II 型肌纤维的线粒体生长。DHA 处理组和对照组动物中,两种纤维类型中线粒体占据的平均面积以及线粒体面积的大小分布高度相似。只有 3-硫代脂肪酸能增加膈肌中肉碱棕榈酰转移酶(CPT)-II 的基因表达。然而,在心脏中,基因表达下降。在肝细胞中,EPA 处理后观察到线粒体平均大小增加,同时线粒体 CPT-II 基因表达增加。给予 2-甲基取代的 EPA(甲基-EPA)比 EPA 诱导的线粒体生长速率更高。在肝细胞的过氧化物酶体水平上,一种 3-硫代脂肪酸、EPA 和 DHA 增加了面积分数,同时诱导了过氧化物酶体脂肪酰辅酶 A 氧化酶(FAO)的基因表达。在膈肌中,EPA 或 DHA 处理不影响 FAO 的 mRNA 水平,而 3-硫代脂肪酸处理后基因表达显著增加。在心脏中,3-硫代脂肪酸、EPA 和 DHA 都倾向于降低 FAO mRNA 的水平。在所有三种组织类型中,3-硫代脂肪酸处理组的脂肪滴面积分数显著更低。在 EPA 处理组中观察到脂肪滴面积分数更低,而 DHA 组与对照组相似。这表明 EPA 和 DHA 对线粒体生物发生有不同影响。

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