Department of Neurobiology, George S. Wise Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv, Israel.
The Department of Cell and Developmental Biology, Faculty of Life Sciences, University College London, London, UK.
Sci Rep. 2017 Mar 20;7:44777. doi: 10.1038/srep44777.
The neuropeptide agouti-related protein (AgRP) is expressed in the arcuate nucleus of the mammalian hypothalamus and plays a key role in regulating food consumption and energy homeostasis. Fish express two agrp genes in the brain: agrp1, considered functionally homologous with the mammalian AgRP, and agrp2. The role of agrp2 and its relationship to agrp1 are not fully understood. Utilizing BAC transgenesis, we generated transgenic zebrafish in which agrp1- and agrp2-expressing cells can be visualized and manipulated. By characterizing these transgenic lines, we showed that agrp1-expressing neurons are located in the ventral periventricular hypothalamus (the equivalent of the mammalian arcuate nucleus), projecting throughout the hypothalamus and towards the preoptic area. The agrp2 gene was expressed in the pineal gland in a previously uncharacterized subgroup of cells. Additionally, agrp2 was expressed in a small group of neurons in the preoptic area that project directly towards the pituitary and form an interface with the pituitary vasculature, suggesting that preoptic AgRP2 neurons are hypophysiotropic. We showed that direct synaptic connection can exist between AgRP1 and AgRP2 neurons in the hypothalamus, suggesting communication and coordination between AgRP1 and AgRP2 neurons and, therefore, probably also between the processes they regulate.
神经肽阿黑皮素原(AgRP)在哺乳动物下丘脑的弓状核中表达,在调节食物摄入和能量平衡方面发挥着关键作用。鱼类在大脑中表达两种 agrp 基因:agrp1,被认为与哺乳动物的 AgRP 具有功能同源性,以及 agrp2。agrp2 的作用及其与 agrp1 的关系尚未完全了解。利用 BAC 转基因技术,我们生成了可可视化和操作 agrp1 和 agrp2 表达细胞的转基因斑马鱼。通过对这些转基因系进行表征,我们表明 agrp1 表达神经元位于腹侧室周下丘脑(相当于哺乳动物的弓状核),投射到整个下丘脑并朝向视前区。agrp2 基因在松果体中以前未被表征的细胞亚群中表达。此外,agrp2 在视前区的一小群神经元中表达,这些神经元直接向垂体投射,并与垂体脉管系统形成界面,提示视前 AgRP2 神经元是垂体激素分泌的。我们表明,下丘脑的 AgRP1 和 AgRP2 神经元之间可能存在直接的突触连接,这表明 AgRP1 和 AgRP2 神经元之间存在通讯和协调,因此,它们可能也与它们调节的过程有关。