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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Physiological role of a novel neuropeptide, apelin, and its receptor in the rat brain.
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Physiological role of a novel neuropeptide, apelin, and its receptor in the rat brain.

机译:新型神经肽,apelin及其受体在大鼠脑中的生理作用。

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摘要

Apelin, a peptide recently isolated from bovine stomach tissue extracts, has been identified as the endogenous ligand of the human orphan APJ receptor. We established a stable Chinese hamster ovary (CHO) cell line expressing a gene encoding the rat apelin receptor fused to the enhanced green fluorescent protein, to investigate internalization and the pharmacological profile of the apelin receptor. Stimulation of this receptor by the apelin fragments K17F (Lys1-Phe-Arg-Arg-Gln-Arg-Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17) and pE13F (pGlu5-Arg-Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17) resulted in a dose-dependent inhibition of forskolin-induced cAMP production and promoted its internalization. In contrast, the apelin fragments R10F (Arg8-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17) and G5F (Gly13-Pro-Met-Pro-Phe17) were inactive. The physiological role of apelin and its receptor was then investigated by showing for the first time in rodent brain: (i) detection of apelin neurons in the supraoptic and paraventricular nuclei by immunohistochemistry with a specific polyclonal anti-apelin K17F antibody; (ii) detection of apelin receptor mRNA in supraoptic vasopressinergic neurons by in situ hybridization and immunohistochemistry; and (iii) a decrease in vasopressin release following intracerebroventricular injection of K17F, or pE13F, but not R10F. Thus, apelin locally synthesized in the supraoptic nucleus could exert a direct inhibitory action on vasopressinergic neuron activity via the apelin receptors synthesized in these cells. Furthermore, central injection of pE13F significantly decreased water intake in dehydrated normotensive rats but did not affect blood pressure. Together, these results suggest that neuronal apelin plays an important role in the central control of body fluid homeostasis.
机译:最近从牛胃组织提取物中分离出的肽Apelin已被鉴定为人类孤儿APJ受体的内源性配体。我们建立了稳定的中国仓鼠卵巢(CHO)细胞系,该细胞系表达编码与增强的绿色荧光蛋白融合的大鼠apelin受体的基因,以研究apelin受体的内在化和药理特性。 apelin片段K17F(Lys1-Phe-Arg-Arg-Gln-Arg-Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17)和pE13F(pGlu5-Arg (Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17)导致剂量依赖性抑制毛喉素诱导的cAMP产生并促进其内在化。相反,apelin片段R10F(Arg8-Leu-Ser-His-Lys-Gly-Pro-Met-Pro-Phe17)和G5F(Gly13-Pro-Met-Pro-Phe17)没有活性。然后通过首次在啮齿动物脑中研究apelin及其受体的生理作用:(i)用特异性多克隆抗apelin K17F抗体通过免疫组织化学法检测视光上和脑室旁核中的apelin神经元; (ii)通过原位杂交和免疫组织化学检测视光加压素神经元中的apelin受体mRNA; (iii)脑室内注射K17F或pE13F,但不注射R10F后,血管加压素释放减少。因此,在视上核中局部合成的apelin可以通过在这些细胞中合成的apelin受体对血管加压素神经元活性发挥直接的抑制作用。此外,集中注射pE13F可以显着降低脱水正常血压大鼠的饮水量,但不会影响血压。总之,这些结果表明神经元apelin在体液稳态的中央控制中起着重要作用。

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