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首页> 外文期刊>Endocrinology >Characterization of Neuropeptide B (NPB), Neuropeptide W (NPW), and Their Receptors in Chickens: Evidence for NPW Being a Novel Inhibitor of Pituitary GH and Prolactin Secretion
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Characterization of Neuropeptide B (NPB), Neuropeptide W (NPW), and Their Receptors in Chickens: Evidence for NPW Being a Novel Inhibitor of Pituitary GH and Prolactin Secretion

机译:鸡神经肽B(NPB),神经肽W(NPW)及其受体的表征:NPW是垂体GH和催乳激素分泌的新型抑制剂的证据

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摘要

The 2 structurally and functionally related peptides, neuropeptide B (NPB) and neuropeptide W (NPW), together with their receptor(s) (NPBWR1/NPBWR2) constitute the NPB/NPW system, which acts mainly on the central nervous system to regulate many physiological processes in mammals. However, little is known about this NPB/NPW system in nonmammalian vertebrates. In this study, the functionality and expression of this NPB/NPW system and its actions on the pituitary were investigated in chickens. The results showed that: 1) chicken NPB/NPW system comprises an NPB peptide of 28 amino acids (cNPB28), an NPW peptide of 23 or 30 amino acids (cNPW23/cNPW30), and their 2 receptors (cNPBWR1 and cNPBWR2), which are highly homologous to their human counterparts. 2) Using a pGL3-CRE-luciferase reporter system, we demonstrated that cNPBWR2 expressed in Chinese hamster ovary cells can be potently activated by cNPW23 (not cNPB28), and its activation inhibits the intracellular cAMP signaling pathway, whereas cNPBWR1 shows no response to peptide treatment, suggesting a crucial role of cNPBWR2 in mediating cNPW/cNPB actions. 3) Quantitative real-time PCR revealed that cNPW and cNPB are widely expressed in chicken tissues, including hypothalamus, whereas cNPBWR1 and cNPBWR2 are mainly expressed in brain or pituitary. 4) In accordance with abundant cNPBWR2 expression in pituitary, cNPW23 could dose dependently inhibit GH and prolactin secretion induced by GHRH and vasoactive intestinal polypeptide, respectively, in cultured chick pituitary cells, as monitored by Western blotting. Collectively, our data reveal a functional NPB/NPW system in birds and offer the first proof that NPW can act directly on pituitary to inhibit GH/prolactin secretion in vertebrates.
机译:结构上和功能上相关的2种肽,神经肽B(NPB)和神经肽W(NPW),以及它们的受体(NPBWR1 / NPBWR2),共同构成了NPB / NPW系统,该系统主要作用于中枢神经系统以调节许多哺乳动物的生理过程。然而,对于非哺乳动物脊椎动物中的NPB / NPW系统知之甚少。在这项研究中,在鸡中研究了该NPB / NPW系统的功能和表达及其对垂体的作用。结果表明:1)鸡NPB / NPW系统包含28个氨基酸的NPB肽(cNPB28),23个或30个氨基酸的NPW肽(cNPW23 / cNPW30)以及它们的2个受体(cNPBWR1和cNPBWR2),与他们的人类同行高度同源。 2)使用pGL3-CRE-萤光素酶报告系统,我们证明了cNPW23(不是cNPB28)可以有效激活中国仓鼠卵巢细胞中表达的cNPBWR2,并且其激活抑制了细胞内cAMP信号传导途径,而cNPBWR1对肽没有反应治疗,提示cNPBWR2在介导cNPW / cNPB行为中起关键作用。 3)实时定量PCR分析表明cNPW和cNPB在鸡组织中广泛表达,包括下丘脑,而cNPBWR1和cNPBWR2主要在脑或垂体中表达。 4)根据蛋白质印迹法监测,根据垂体中大量的cNPBWR2表达,cNPW23可以剂量依赖性地分别抑制培养的鸡垂体细胞中GHRH和血管活性肠多肽诱导的GH和催乳激素分泌。总的来说,我们的数据揭示了鸟类中NPB / NPW系统的功能,并首次证明NPW可以直接作用于垂体以抑制脊椎动物的GH /催乳激素分泌。

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