首页> 美国卫生研究院文献>The Journal of Neuroscience >Conservation of Expression of Neuropeptide Y5 Receptor between Human and Rat Hypothalamus and Limbic Regions Suggests an Integral Role in Central Neuroendocrine Control
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Conservation of Expression of Neuropeptide Y5 Receptor between Human and Rat Hypothalamus and Limbic Regions Suggests an Integral Role in Central Neuroendocrine Control

机译:人和大鼠下丘脑和边缘区域之间神经肽Y5受体表达的保守性提示中枢神经内分泌控制中的整合作用。

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摘要

Neuropeptide Y receptors belong to the G-protein-coupled receptor superfamily and mediate a wide variety of physiological functions, including blood pressure regulation, hormone release, appetite control, seizure propensity, cognition, and emotion. The recent description of a new neuropeptide Y receptor, Y5, expressed in hypothalamic nuclei in rat brain, raised the possibility that Y5 was the receptor mediating the feeding and appetite-related functions of neuropeptide Y. This was supported by subsequent data showing a downregulation of this “feeding” receptor in the brain of the obese Zucker rat (). We have performed a detailed analysis of Y5 expression in rat brain using in situ hybridization histochemistry with digoxygenin-labeled riboprobes and compared this to expression of Y5 in human brain regions. mRNA for the human Y5 receptor was highly expressed in human hypothalamic and thalamic nuclei. In particular, the arcuate and paraventricular nuclei of the hypothalamus, midline thalamic nuclei, and amygdala showed very high levels of expression with high levels in hippocampus. The striking conservation of expression of the rat and human Y5 receptors in relevant hypothalamic and other nuclei implies sharing of a major neuroendocrine functional role by this receptor.
机译:神经肽Y受体属于G蛋白偶联受体超家族,介导多种生理功能,包括血压调节,激素释放,食欲控制,癫痫发作倾向,认知和情绪。最近在大鼠大脑的下丘脑核中表达了一种新的神经肽Y受体Y5的描述,提出了Y5是介导神经肽Y的进食和食欲相关功能的受体的可能性。随后的数据显示,该信号下调了神经肽Y的表达。肥胖的Zucker大鼠大脑中的这种“喂养”受体()。我们已经使用地高辛配基标记的核糖核酸原位杂交组织化学对大鼠大脑中的Y5表达进行了详细分析,并将其与人脑区域的Y5表达进行了比较。人Y5受体的mRNA在人下丘脑和丘脑核中高表达。特别地,下丘脑,中线丘脑核和杏仁核的弓形和室旁核显示出非常高的表达水平,而在海马中表达高。大鼠和人Y5受体在相关的下丘脑和其他细胞核中表达的惊人保守性暗示该受体共享主要的神经内分泌功能。

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