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首页> 外文期刊>Peptides: An International Journal >Characterization of prolactin-releasing peptide: binding, signaling and hormone secretion in rodent pituitary cell lines endogenously expressing its receptor.
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Characterization of prolactin-releasing peptide: binding, signaling and hormone secretion in rodent pituitary cell lines endogenously expressing its receptor.

机译:催乳激素释放肽的特征:内源性表达其受体的啮齿动物垂体细胞系中的结合,信号传导和激素分泌。

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The recently discovered prolactin-releasing peptide (PrRP) binds to the PrRP receptor and is involved in endocrine regulation and energy metabolism. However, its main physiological role is currently unknown. Two biologically active isoforms of PrRP exist: the 31 (PrRP31) and the 20 (PrRP20) amino acid forms, which both contain a C-terminal Phe amide sequence. In the present study, the PrRP receptor was immunodetected in three rodent tumor pituitary cell lines: GH3, AtT20 and RC-4B/C cells. The saturation binding of radioiodinated PrRP31 to intact cells demonstrated a K(d) in the 10(-9)M range and a B(max) in the range of tens of thousands binding sites per cell. For binding to RC-4B/C cells, both PrRP31 and PrRP20 competed with (125)I-PrRP31 with a similar K(i). The C-terminal analog PrRP13 showed lower binding potency compared to PrRP31 and PrRP20. All PrRP analogs increased the phosphorylation of MAPK/ERK1/2 (mitogen-activated phosphorylase/extracellular-regulated kinase) and CREB (cAMP response element-binding protein) in RC-4B/C cells. Additionally, prolactin release was induced by the PrRP analogs in a dose-dependent manner in RC-4B/C cells. Finally, food intake after intracerebroventricular administration of PrRP analogs in fasted mice was followed. Both PrRP31 and PrRP20 decreased food intake, but PrRP13 did not show significant effect. Studies on pituitary cell lines expressing the PrRP receptor are more physiologically relevant than those on cells transfected with the receptor. This cell type can be used as a model system for pharmacological studies searching for PrRP antagonists and stable effective PrRP agonists, as these drugs may have potential as anti-obesity agents.
机译:最近发现的催乳激素释放肽(PrRP)与PrRP受体结合,并参与内分泌调节和能量代谢。但是,目前尚不清楚其主要的生理作用。存在两种PrP的生物活性同工型:31个(PrRP31)和20个(PrRP20)氨基酸形式,它们都包含一个C端Phe酰胺序列。在本研究中,在三种啮齿动物肿瘤垂体细胞系:GH3,AtT20和RC-4B / C细胞中免疫检测到PrRP受体。放射性碘化的PrRP31与完整细胞的饱和结合表现出K(d)在10(-9)M范围内,而B(max)在每细胞数万个结合位点的范围内。为了与RC-4B / C细胞结合,PrRP31和PrRP20都与具有相似K(i)的(125)I-PrRP31竞争。与PrRP31和PrRP20相比,C末端类似物PrRP13显示出较低的结合力。所有的PrRP类似物均可增加RC-4B / C细胞中MAPK / ERK1 / 2(促分裂原活化的磷酸化酶/细胞外调节激酶)和CREB(cAMP反应元件结合蛋白)的磷酸化。另外,在RC-4B / C细胞中,PrRP类似物以剂量依赖的方式诱导催乳素释放。最后,追踪在禁食小鼠的脑室内施用PrRP类似物后的食物摄取。 PrRP31和PrRP20均会减少食物摄入,但PrRP13并未显示出明显的作用。对表达PrRP受体的垂体细胞系的研究,比对转染受体的垂体细胞系的研究更具生理学意义。这种细胞类型可以用作药理研究的模型系统,以寻找PrRP拮抗剂和稳定有效的PrRP激动剂,因为这些药物可能具有抗肥胖剂的潜力。

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