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The nonapeptide isotocin in goldfish: Evidence for serotonergic regulation and functional roles in the control of food intake and pituitary hormone release

机译:金鱼中的非肽单酰基:血清奈良能调节和功能作用控制食物摄入和垂体激素释放的证据

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Highlights ? Evidence for novel physiological functions of isotocin in teleost fish. ? Centrally administered isotocin inhibits feed intake in goldfish in vivo. ? Isotocin is hypophysiotropic and stimulates goldfish pituitary LH and GH in vitro. ? Evidence for serotonergic regulation of the isotocin system in goldfish. Abstract Nonapeptides are a highly conserved family of peptides synthesized in the neuroendocrine brain and acting on central and peripheral receptors to regulate physiological functions in vertebrates. While the evolution of the two gene families of oxytocin-like and vasopressin-like nonapeptides and their receptors, as well as the neuroanatomy of their independent neuronal circuits have been well-characterized across vertebrate species, comparative studies on the physiological roles across vertebrates are lagging behind. In the current study, we focused on the comparative neuroendocrine functions and regulation of isotocin, the teleost homologue of mammalian oxytocin. Specifically, we address the hypothesis that isotocin exerts opposing effects on food intake and reproduction, which are well-established effects of its homologue oxytocin in mammalian species. Using goldfish, a well-characterized model of neuroendocrine regulation of both food intake and reproduction, we here showed that isotocin acts as an anorexigenic factor while exerting stimulatory effects on pituitary luteinizing hormone and growth hormone release. Given the dual inhibitory and stimulatory roles of serotonin on food intake and pituitary release of reproductive hormone in goldfish, we also investigated the potential crosstalk between both systems using immunohistochemistry and pharmacological approaches. Results provide neuroanatomical and pharmacological evidence for serotonergic regulation of magnocellular isotocinergic neurons in the preoptic area and pituitary. Together, these findings firstly provide the basis to investigate neuroendocrine cross-talk between serotonergic and nonapeptidergic systems in the regulation of both food intake and reproduction in goldfish, and secondly point to a conserved function of oxytocin-like peptides in the differential neuroendocrine control of both physiological processes in vertebrates.
机译:强调 ?电视中同种型鱼类的新生理功能的证据。还中央施用的等霉素抑制了在体内金鱼中的进料入口。还异甲酸是衰弱的,刺激金鱼垂体LH和体外GH。还金鱼中同种酰变细胞系统血清酮系统的证据。摘要非肽是在神经内分泌脑中合成的高度保守的肽系列,并作用于中央和外周受体以调节脊椎动物的生理功能。虽然两种基因类的催产素样和血管加压素的非肽和其受体的演变,以及其独立的神经电源的神经元的神经肿瘤的特征在于脊椎动物物种,对比较研究脊椎动物的生理作用是滞后的在后面。在目前的研究中,我们专注于对比较神经内分泌功能和同种型哺乳动物催产素的紧邻同源物的调控。具体而言,我们解决了异杂蛋白对食物摄入和繁殖的反对作用的假设,这是其同源催产素在哺乳动物物种中的良好效果。我们在这里使用金鱼是食物摄入和繁殖的良心内分泌调节模型,我们展示了同种酰作用作为厌恶因素,同时施加对垂体培氏激素和生长激素释放的刺激作用。鉴于血清素对金鱼生殖激素食品摄入和垂体释放的双重抑制和刺激作用,我们还研究了使用免疫组织化学和药理学方法的两种系统之间的潜在串扰。结果为近视区和垂体术后甲状腺细胞异细胞神经元的血清肠泡能调节提供神经杀菌和药理证据。这些发现首先提供了在金鱼中食物摄入和繁殖的调节中调查血清癌细胞和非疫苗生物系统之间的神经内分泌串扰的基础,其次指向两种吞噬神经内分泌控制中的催产素样肽的保守功能脊椎动物的生理过程。

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