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禁食以大麻素受体1依赖的方式诱导斑马鱼神经系统中可卡因-安非他明调节转录肽(CART)的下调。

Fasting induces CART down-regulation in the zebrafish nervous system in a cannabinoid receptor 1-dependent manner.

作者信息

Nishio Shin-Ichi, Gibert Yann, Berekelya Liubov, Bernard Laure, Brunet Frédéric, Guillot Etienne, Le Bail Jean-Christophe, Sánchez Juan Antonio, Galzin Anne Marie, Triqueneaux Gerard, Laudet Vincent

机构信息

Institut de Genomique Fonctionelle de Lyon, Unité Mixte de Recherche 5242 du Centre National de la Recherche Scientifique, Université de Lyon, Lyon, France.

出版信息

Mol Endocrinol. 2012 Aug;26(8):1316-26. doi: 10.1210/me.2011-1180. Epub 2012 Jun 14.

Abstract

Central and peripheral mechanisms modulate food intake and energy balance in mammals and the precise role of the type 1 cannabinoid receptor (CB1) in these processes is still being explored. Using the zebrafish, Danio rerio, we show that rimonabant, a CB1-specific antagonist with an EC(50) of 5.15 × 10(-8) m, decreases embryonic yolk sac reserve use. We reveal a developmental overlap between CART genes and CB1 expression in the hypothalamus and medulla oblongata, two brain structures that play crucial roles in appetite regulation in mammals. We show that morpholino knockdown of CB1 or fasting decreases cocaine- and amphetamine-related transcript (CART)-3 expression. Strikingly, this down-regulation occurs only in regions coexpressing CB1 and CART3, reinforcing the link between CB1, CART, and appetite regulation. We show that rimonabant treatment impairs the fasting-induced down-regulation of CART expression in specific brain regions, whereas vehicle alone-treated embryos do not display this rescue of CART expression. Our data reveal that CB1 lies upstream of CART and signals the appetite through the down-regulation of CART expression. Thus, our results establish the zebrafish as a promising system to study appetite regulation.

摘要

中枢和外周机制调节哺乳动物的食物摄入和能量平衡,1型大麻素受体(CB1)在这些过程中的精确作用仍在探索中。利用斑马鱼(Danio rerio),我们发现利莫那班(一种CB1特异性拮抗剂,EC50为5.15×10-8 m)可减少胚胎卵黄囊储备的利用。我们揭示了可卡因-安非他明调节转录肽(CART)基因与下丘脑和延髓中CB1表达之间的发育重叠,这两个脑结构在哺乳动物的食欲调节中起关键作用。我们表明,通过吗啉代敲低CB1或禁食会降低可卡因-安非他明调节转录肽(CART)-3的表达。令人惊讶的是,这种下调仅发生在共表达CB1和CART3的区域,加强了CB1、CART和食欲调节之间的联系。我们表明,利莫那班处理会损害特定脑区中禁食诱导的CART表达下调,而单独用溶剂处理的胚胎则不会出现这种CART表达的恢复。我们的数据表明,CB1位于CART的上游,并通过下调CART表达来传递食欲信号。因此,我们的结果确立了斑马鱼作为研究食欲调节的一个有前景的系统。

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