Haraguchi Shogo, Yamamoto Yuzo, Suzuki Yuko, Hyung Chang Joon, Koyama Teppei, Sato Miku, Mita Masatoshi, Ueda Hiroshi, Tsutsui Kazuyoshi
1] Department of Biology and Center for Medical Life Science, Waseda University, Tokyo, Japan [2] Department of Biology, Tokyo Gakugei University, Tokyo, Japan.
1] Field Science Center for Northern Biosphere, Hokkaido University, Hokkaido, Japan [2] Current address: Demonstration Laboratory, Marine Ecology Research Institute, Niigata, Japan.
Sci Rep. 2015 Jul 29;5:12546. doi: 10.1038/srep12546.
Salmon migrate upstream against an opposing current in their natal river. However, the molecular mechanisms that stimulate upstream migratory behavior are poorly understood. Here, we show that 7α-hydroxypregnenolone (7α-OH PREG), a newly identified neuronal modulator of locomotion, acts as a key factor for upstream migration in salmon. We first identified 7α-OH PREG and cytochrome P450 7α-hydroxylase (P4507α), a steroidogenic enzyme producing 7α-OH PREG, in the salmon brain and then found that 7α-OH PREG synthesis in the brain increases during upstream migration. Subsequently, we demonstrated that 7α-OH PREG increases upstream migratory behavior of salmon. We further found that 7α-OH PREG acts on dopamine neurons in the magnocellular preoptic nucleus during upstream migration. Thus, 7α-OH PREG stimulates upstream migratory behavior through the dopaminergic system in salmon. These findings provide new insights into the molecular mechanisms of fish upstream migration.
鲑鱼会逆着其出生河流中的逆流向上游洄游。然而,刺激上游洄游行为的分子机制却鲜为人知。在此,我们表明,7α-羟基孕烯醇酮(7α-OH PREG),一种新发现的运动神经元调节剂,是鲑鱼上游洄游的关键因素。我们首先在鲑鱼大脑中鉴定出7α-OH PREG和细胞色素P450 7α-羟化酶(P4507α),一种产生7α-OH PREG的类固醇生成酶,然后发现大脑中7α-OH PREG的合成在上游洄游期间增加。随后,我们证明7α-OH PREG会增加鲑鱼的上游洄游行为。我们进一步发现,在鲑鱼上游洄游期间,7α-OH PREG作用于大细胞视前核中的多巴胺能神经元。因此,7α-OH PREG通过鲑鱼的多巴胺能系统刺激上游洄游行为。这些发现为鱼类上游洄游的分子机制提供了新的见解。