Evolutionary Biology Centre, Department of Organismal Biology/Comparative Physiology, Uppsala University, SE-752 36 Uppsala, Sweden.
Gen Comp Endocrinol. 2012 Jan 1;175(1):92-9. doi: 10.1016/j.ygcen.2011.10.001. Epub 2011 Oct 12.
Leptin is a pleiotropic hormone and plays a key role in body weight regulation, energy homeostasis and lipid store utilization in mammals. In this study, we investigated the effect of feed-restriction on leptin genes (lepa1 and lepa2), leptin receptor (lepr) gene expression and plasma leptin levels in juvenile Atlantic salmon parr. Feed restriction was performed from late April to mid-June, in order to gain insight into the role of the leptin system in energy balance regulation and adiposity in juvenile salmon. A significant increase in lepa1 expression as well as higher levels of plasma leptin was found in feed-restricted fish in June compared to fully fed controls, while lepa2 gene expression decreased in both groups during the treatment period. Lepa2 was, however significantly higher in the feed-restricted group in June. Leptin receptor expression was up regulated during the period of enhanced growth and lipid deposition in the fully fed control, indicating a seasonal effect on the receptor expression in the brain. Both lepa1 and lepa2 genes very mainly expressed in the liver in juvenile salmon, while lepr was expressed in the brain but showed also considerable expression in various peripheral tissues. The study provides evidence that the leptin system is sensitive to the metabolic status of the fish as both season and restricted feeding affect lepa1 and lepa2 gene expression in the liver and brain leptin receptor expression, however, for lepa1 expression and leptin plasma level in an opposite way as that observed in the mammalian system.
瘦素是一种多功能激素,在哺乳动物的体重调节、能量平衡和脂质储存利用中发挥着关键作用。在这项研究中,我们调查了饲料限制对幼大西洋鲑鱼(parr)瘦素基因(lepa1 和 lepa2)、瘦素受体(lepr)基因表达和血浆瘦素水平的影响。从 4 月底到 6 月中旬进行饲料限制,以便深入了解瘦素系统在能量平衡调节和肥胖中的作用。与完全喂食的对照组相比,6 月份饲料限制的鱼中 lepa1 表达显著增加,血浆瘦素水平也更高,而在整个治疗期间,两组的 lepa2 基因表达均下降。然而,6 月份饲料限制组的 lepa2 明显更高。在完全喂食的对照组中,在增强生长和脂肪沉积期间,瘦素受体表达上调,表明大脑中的受体表达存在季节性影响。lepa1 和 lepa2 基因在幼鲑鱼的肝脏中大量表达,而 lepr 在大脑中表达,但在各种外周组织中也有相当表达。该研究提供了证据表明,瘦素系统对鱼类的代谢状态敏感,因为季节和限制喂养都会影响肝脏和大脑中 lepa1 和 lepa2 基因的表达以及瘦素受体的表达,然而,lepa1 表达和瘦素血浆水平的变化与哺乳动物系统观察到的方式相反。