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粒突新方蟹肝胰腺中的甘油异生作用:饮食、饥饿和季节影响

Glyceroneogenesis in the hepatopancreas of the crab Neohelice granulata: Diet, starvation and season effects.

作者信息

Sarapio E, Santos J T, Model J F A, De Fraga L S, Vinagre A S, Martins T L, Da Silva R S M, Trapp M

机构信息

Department of Physiology, Institute of Health Basic Sciences, Federal University of Rio Grande do Sul, Rua Sarmento Leite, 500, 90050-170 Porto Alegre, RS, Brazil.

Department of Physiology, Institute of Health Basic Sciences, Federal University of Rio Grande do Sul, Rua Sarmento Leite, 500, 90050-170 Porto Alegre, RS, Brazil.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2017 Sep;211:1-7. doi: 10.1016/j.cbpb.2017.02.004. Epub 2017 Feb 22.

Abstract

We determined the activity of glyceroneogenesis from [2-C]-pyruvate, the phosphoenolpyruvate carboxykinase activity, [2-C]-pyruvate oxidation and total lipid levels in the hepatopancreas of the crab Neohelice granulata fed with a carbohydrate-rich (HC) diet or a high-protein (HP) diet and then subjected to 5weeks of starvation, in summer and winter, to determine whether the seasonal adjustments of lipid metabolism to food scarcity are modulated by the composition of the diet previously given to the crabs. The results demonstrated that glyceroneogenesis is an active pathway in N. granulata hepatopancreas, and is regulated by seasonal variations, diet composition and starvation. This study showed that in summer the increase in the hepatopancreas glyceroneogenesis activity is among the strategies used by N. granulata fed an HP diet, to maintain the triglyceride/fatty acid cycle during starvation, a normal condition in the biological cycle of this crab. However, the administration of an HC diet reduced the glyceroneogenesis capacity in response to starvation in summer. In winter, the decrease in the glyceroneogenesis capacity in both fed (HP and HC diets) and starved crabs seems to be a strategy to reduce energy consumption and/or requirement. In contrast to the summer results, the incorporation of [2-C]-pyruvate into CO was markedly higher in both diet (HC and HP) groups and in starved crabs during the winter. Four decades after the first study describing the glyceroneogenesis pathway in rat white adipose tissue, this pathway is evidenced for the first time in a crustacean.

摘要

我们测定了以富含碳水化合物(HC)的饲料或高蛋白(HP)饲料喂养的粒突新海伦蟹(Neohelice granulata)肝胰腺中由[2-C]-丙酮酸生成甘油的能力、磷酸烯醇式丙酮酸羧激酶活性、[2-C]-丙酮酸氧化作用以及总脂质水平,然后在夏季和冬季使其经历5周饥饿,以确定脂质代谢对食物短缺的季节性调节是否受先前给予螃蟹的饲料组成的影响。结果表明,甘油生成在粒突新海伦蟹肝胰腺中是一条活跃的途径,并且受季节变化、饲料组成和饥饿的调节。这项研究表明,在夏季,以HP饲料喂养的粒突新海伦蟹肝胰腺中甘油生成活性的增加是其维持饥饿期间甘油三酯/脂肪酸循环所采用的策略之一,这在该蟹的生物周期中是正常情况。然而,给予HC饲料会降低夏季饥饿时的甘油生成能力。在冬季,无论是喂食(HP和HC饲料)还是饥饿的螃蟹,甘油生成能力的下降似乎都是一种减少能量消耗和/或需求的策略。与夏季结果相反,在冬季,两种饲料(HC和HP)组以及饥饿的螃蟹中,[2-C]-丙酮酸转化为二氧化碳的比例都明显更高。在首次描述大鼠白色脂肪组织中甘油生成途径的研究过去四十年后,该途径首次在甲壳类动物中得到证实。

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