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首页> 外文期刊>Aquaculture Nutrition >Comparative study on the kinetic behaviour of carnitine palmitoyltransferase I between Javelin goby Synechogobius hasta (carnivorous) and grass carp Ctenopharyngodon idella (herbirovous)
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Comparative study on the kinetic behaviour of carnitine palmitoyltransferase I between Javelin goby Synechogobius hasta (carnivorous) and grass carp Ctenopharyngodon idella (herbirovous)

机译:标枪鱼虾虎鱼肉食性和草鱼食蟹类肉食性之间肉碱棕榈酰转移酶I动力学行为的比较研究

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Up to date, the carnitine palmitoyltransferase (CPT) system in fish nutrition receives little attention. The present study compared CPT I kinetic behaviour of Synechogobius hasta (carnivorous) and Ctenopharyngodon idella (herbivorous). The optimal conditions (temperature, incubation time, mitochondrial protein concentration and pH) for maximum CPT I activity showed no significant difference between S.hasta and C.idella. CPT I activities in S.hasta were significantly higher than those in C.idella. Affinity constants (Km) for carnitine in liver, heart, white muscle and spleen of S.hasta were significantly higher than those in C.idella. K-m for palmitoyl-CoA in liver and heart of S.hasta were significantly higher than those in C.idella. V-max for carnitine and palmitoyl-CoA in S.hasta tended to be higher than those in C.idella. Catalytic efficiencies (V-max/K-m) for carnitine in liver, white muscle and spleen of C.idella were significantly higher than those in S.hasta. V-max/K-m values for palmitoyl-CoA in liver and heart of C.idella were higher than those in S.hasta. Our study demonstrated that the lower catalytic efficiency for carnitine in liver of S.hasta indicated that the fish showed a low capacity for energy generation through -oxidation of long-chain fatty acids, which easily caused fatty liver syndrome. This is the first study in which, by using carnitine and palmitoyl-CoA as the substrates, the complete kinetic characterization of CPT I in fish has been described, which increases our knowledge about lipid metabolism and its critical role in lipid utilization in fish.
机译:迄今为止,鱼类营养中的肉碱棕榈酰转移酶(CPT)系统鲜有受到关注。本研究比较了Synechogobius hasta(肉食性)和Ctenopharyngodon idella(草食性)的CPT I动力学行为。最大的CPT I活性的最佳条件(温度,温育时间,线粒体蛋白质浓度和pH)显示S.hasta和C.idella之间没有显着差异。哈斯塔沙门氏菌的CPT I活性明显高于沙门氏菌。哈氏链球菌的肝脏,心脏,白色肌肉和脾肉碱的亲和常数(Km)明显高于C.idella。沙门氏菌肝和心脏中棕榈酰辅酶A的K-m显着高于C.idella。哈斯塔沙门氏菌的肉碱和棕榈酰辅酶A的V-max往往高于C.idella。肉毒梭菌在肝脏,白色肌肉和脾脏中对肉碱的催化效率(V-max / K-m)显着高于沙门氏菌。 C.idella肝和心脏中棕榈酰-CoA的V-max / K-m值高于S.hasta。我们的研究表明,哈氏链球菌在肝脏中对肉碱的催化效率较低,这表明该鱼通过长链脂肪酸的氧化显示出较低的能量产生能力,这很容易引起脂肪肝综合症。这是第一项研究,其中以肉碱和棕榈酰-CoA为底物,对鱼中CPT I的完整动力学特性进行了描述,这增加了我们对脂质代谢及其在鱼类脂质利用中的关键作用的认识。

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