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尽管存在脂肪酸结合蛋白,但硬骨鱼类鳃中脂肪酸燃料的β-氧化酶活性较低。

Enzymatic capacities for beta-oxidation of fatty fuels are low in the gill of teleost fishes despite presence of fatty acid-binding protein.

作者信息

Crockett E L, Londraville R L, Wilkes E E, Popesco M C

机构信息

Department of Biological Sciences, Ohio University, Athens, Ohio 45701, USA.

出版信息

J Exp Zool. 1999 Aug 1;284(3):276-85. doi: 10.1002/(sici)1097-010x(19990801)284:3<276::aid-jez5>3.0.co;2-n.

Abstract

A variety of circulating fuels can support the work of the teleost gill. Previous work indicates, however, that unlike other aerobic tissues from teleosts, the gill may have a limited capacity to oxidize fatty fuels. We determined capacities for catabolism of carbohydrate, fatty acids, and amino acids in four species of temperate marine or euryhaline teleosts representing distinct lineages. In addition, we assessed the capacity for fatty acid oxidation in the gill from an Antarctic species. Activities of rate-limiting or regulatory enzymes from pathways of energy metabolism were measured at physiological temperatures (15 degrees or 1 degrees C). In the temperate species, ATP yields from glucose are 3- to 30-fold greater (varying with species) than ATP yields from a monounsaturated fatty acid, while ATP generation from glutamate is 2-50 times greater than similar capacities for the lipid fuel. Like the temperate species, capacity for beta-oxidation of fatty acids is limited in the Antarctic species. A positive linear correlation between activities of citrate synthase (central pathway of oxidative metabolism) and hexokinase (glycolysis) adds further support to the hypothesis that glucose is a preferred metabolic fuel in gill. Our results also demonstrate that fatty acid-binding protein is present in the gill of teleost fishes. It is likely that this protein plays a more important role facilitating anabolic pathways in lipid metabolism rather than fatty acid oxidation in the gill of teleost fishes.

摘要

多种循环燃料可为硬骨鱼的鳃提供能量支持。然而,先前的研究表明,与硬骨鱼的其他有氧组织不同,鳃氧化脂肪类燃料的能力可能有限。我们测定了代表不同谱系的四种温带海洋硬骨鱼或广盐性硬骨鱼对碳水化合物、脂肪酸和氨基酸的分解代谢能力。此外,我们评估了一种南极硬骨鱼鳃中脂肪酸氧化的能力。在生理温度(15℃或1℃)下测量了能量代谢途径中限速酶或调节酶的活性。在温带硬骨鱼中,葡萄糖产生的ATP量比单不饱和脂肪酸产生的ATP量高3至30倍(因物种而异),而谷氨酸产生的ATP量比脂质燃料的类似能力高2至50倍。与温带硬骨鱼一样,南极硬骨鱼中脂肪酸的β-氧化能力也有限。柠檬酸合酶(氧化代谢的中心途径)和己糖激酶(糖酵解)的活性之间呈正线性相关,这进一步支持了葡萄糖是鳃中首选代谢燃料的假说。我们的研究结果还表明,硬骨鱼的鳃中存在脂肪酸结合蛋白。这种蛋白质可能在促进硬骨鱼鳃脂质代谢的合成代谢途径中发挥更重要的作用,而不是在脂肪酸氧化过程中。

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