LANEH, School of Life Sciences, East China Normal University, Shanghai, 200241, China.
Fish Physiol Biochem. 2020 Aug;46(4):1229-1242. doi: 10.1007/s10695-020-00785-w. Epub 2020 Mar 6.
Many metabolic diseases in fish are often associated with lowered peroxisomal fatty acid (FA) β-oxidation. However, the physiological role of peroxisomal FA oxidation in lipid metabolism in fish still remains unclear. In the present study, a specific peroxisomal FA β-oxidation inhibitor, 10,12-tricosadiynoic acid (TDYA), was used to investigate the effects of impaired peroxisomal β-oxidation on growth performance, health status, and lipid metabolism in Nile tilapia. The results showed that the dietary TDYA treatment did not affect weight gain, but significantly decreased peroxisomal β-oxidation in the liver, and increased body fat accumulation. The fish with impaired peroxisomal β-oxidation exhibited higher contents of serum lipid and peroxidation products, and alanine aminotransferase activity, and significantly lowered hepatic activities of superoxide dismutase and catalase. The inhibited peroxisomal β-oxidation did not enhance mitochondrial β-oxidation activity, but compensatorily upregulated FA β-oxidation-related gene expression, and downregulated the gene expressions in lipolysis and lipogenesis. Taken together, TDYA treatment markedly induced lipid accumulation and hepatic oxidative damage via systemically depressing lipid catabolism and antioxidant capacity. Our findings reveal the pivotal roles of peroxisomal β-oxidation in maintaining health and lipid homeostasis in fish, and could be helpful in understanding metabolic diseases in fish.
许多鱼类的代谢疾病通常与过氧化物酶体脂肪酸 (FA) β-氧化降低有关。然而,过氧化物酶体 FA 氧化在鱼类脂质代谢中的生理作用仍不清楚。在本研究中,使用一种特定的过氧化物酶体 FA β-氧化抑制剂,10,12-二十三碳二烯酸 (TDYA),来研究过氧化物酶体 β-氧化受损对尼罗罗非鱼生长性能、健康状况和脂质代谢的影响。结果表明,日粮 TDYA 处理不影响体重增加,但显著降低了肝脏过氧化物酶体 β-氧化,并增加了体脂积累。过氧化物酶体 β-氧化受损的鱼表现出更高的血清脂质和过氧化产物含量,以及丙氨酸氨基转移酶活性,并显著降低了肝脏中超氧化物歧化酶和过氧化氢酶的活性。抑制过氧化物酶体 β-氧化并没有增强线粒体 β-氧化活性,而是代偿性地上调了 FA β-氧化相关基因的表达,并下调了脂肪分解和脂肪生成相关基因的表达。总之,TDYA 处理通过系统性地下调脂质分解和抗氧化能力,显著诱导了脂质积累和肝氧化损伤。我们的发现揭示了过氧化物酶体 β-氧化在维持鱼类健康和脂质平衡中的关键作用,并有助于理解鱼类的代谢疾病。