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虹鳟鱼组织中葡萄糖激酶和己糖激酶的表达及活性:饥饿和再投喂后的变化

Glucokinase and hexokinase expression and activities in rainbow trout tissues: changes with food deprivation and refeeding.

作者信息

Soengas José L, Polakof Sergio, Chen Xi, Sangiao-Alvarellos Susana, Moon Thomas W

机构信息

Laboratorio de Fisioloxía Animal, Departamento de Bioloxía Functional e Ciencias da Saúde, Facultade de Bioloxía, Universidade de Vigo, E-36310 Vigo, Spain.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2006 Sep;291(3):R810-21. doi: 10.1152/ajpregu.00115.2006. Epub 2006 Apr 13.

Abstract

The expression and activities of glucokinase (GK) and hexokinase (HK) were assessed in different tissues of rainbow trout (Oncorhynchus mykiss) under different feeding conditions (fed, fasted for 14 days, and refed for 7 days). Two different HK-I cDNAs were identified with different tissue distributions. One transcript named heart or H-HK-I was observed in the four brain regions assessed, white muscle, kidney, and gills but not in liver or erythrocytes. A second transcript named liver or L-HK-I was found in all tissues surveyed. GK mRNA was identified only in liver and the four brain regions. GK expression was altered by feeding conditions, especially in liver and hypothalamus where food deprivation decreased and re-feeding increased expression; changes in expression reflected activity changes and changes in tissue glycogen levels. In contrast, feeding conditions did not alter expression of either HK-I transcript but did alter tissue HK activities. The reduced phosphorylating capacity noted with food deprivation correlates primarily with changes in tissue HK, whereas increased capacity, as with refeeding, was associated with changes in GK; these changes fit with the different K(m) values of the GK and HK enzymes. These results provide evidence for the hypothalamus acting as a glucosensor in trout, as hyperglycemia produced increased GK expression and activity, as well as increased glycogen levels. Thus, even though trout use glucose poorly, none of the parameters tested here relate to this inability to use glucose and suggest that, at least, rainbow trout, if given an appropriate carbohydrate diet, could metabolically adjust to such a diet.

摘要

在不同饲养条件下(喂食、禁食14天和再喂食7天),评估虹鳟(Oncorhynchus mykiss)不同组织中葡萄糖激酶(GK)和己糖激酶(HK)的表达及活性。鉴定出两种具有不同组织分布的不同HK-I cDNA。在评估的四个脑区、白肌、肾脏和鳃中观察到一种名为心脏型或H-HK-I的转录本,但在肝脏或红细胞中未观察到。在所有检测组织中发现了另一种名为肝脏型或L-HK-I的转录本。GK mRNA仅在肝脏和四个脑区中被鉴定出来。GK的表达受饲养条件影响,尤其是在肝脏和下丘脑中,食物剥夺会降低其表达,而再喂食则会增加其表达;表达的变化反映了活性变化以及组织糖原水平的变化。相比之下,饲养条件并未改变任何一种HK-I转录本的表达,但确实改变了组织HK的活性。食物剥夺时磷酸化能力降低主要与组织HK的变化相关,而与再喂食时能力增加相关的是GK的变化;这些变化与GK和HK酶不同的米氏常数(K(m))值相符。这些结果为下丘脑作为鳟鱼体内葡萄糖感受器提供了证据,因为高血糖会使GK表达和活性增加,同时糖原水平也会增加。因此,尽管鳟鱼对葡萄糖的利用能力较差,但此处测试的任何参数都与这种利用葡萄糖的能力无关,这表明至少虹鳟如果给予适当的碳水化合物饮食,能够在代谢上适应这种饮食。

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