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Evidence for a novel intrapituitary autocrine/paracrine feedback loop regulating growth hormone synthesis and secretion in grass carp pituitary cells by functional interactions between gonadotrophs and somatotrophs

机译:通过促性腺激素和生长激素之间的功能性相互作用来调节草鱼垂体细胞中生长激素合成和分泌的新型垂体内分泌/旁分泌反馈环的证据

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摘要

Gonadotropin (GTH) and GH released from the pituitary are known to interact at multiple levels to modulate the functions of the gonadotrophic and somatotrophic axes. However, their interactions at the pituitary level have not been fully characterized. In this study, autocrine/paracrine regulation of GH synthesis and secretion by local interactions between gonadotrophs and somatotrophs was examined using grass carp pituitary cells as a cell model. Exogenous GTH and GH induced GH release and GH mRNA expression in carp pituitary cells. Removal of endogenous GTH and GH by immunoneutralization with GTH and GH antisera, respectively, suppressed GH release, GH production, and GH mRNA levels. GH antiserum also blocked the stimulatory effects of exogenous GTH on GH release and GH mRNA levels. In reciprocal experiments, GH release and GH mRNA expression induced by exogenous GH was significantly reduced by GTH antiserum. In addition, exogenous GH was found to be inhibitory to basal GTH release and treatment with GH antiserum elevated GTH secretion at low doses but suppressed GTH production at high doses. These results suggest that local interactions between gonadotrophs and somatotrophs may form an intrapituitary feedback loop to regulate GH release and synthesis. In this model, GTH released from gonadotrophs induces GH release and GH production in neighboring somatotrophs. GH secreted maintains somatotroph sensitivity to GTH stimulation, and at the same time, inhibits basal GTH release in gonadotrophs. This feedback loop may represent a novel mechanism regulating GH release and synthesis in lower vertebrates.
机译:已知垂体释放的促性腺激素(GTH)和GH在多个水平上相互作用以调节性腺和体养轴的功能。但是,它们在垂体水平上的相互作用尚未得到充分表征。在这项研究中,使用草鱼垂体细胞作为细胞模型,研究了通过性腺和体养体之间的局部相互作用对GH合成和分泌的自分泌/旁分泌调节。外源性GTH和GH诱导鲤鱼垂体细胞GH释放和GH mRNA表达。通过分别用GTH和GH抗血清进行免疫中和来去除内源性GTH和GH,可抑制GH的释放,GH的产生和GH mRNA的水平。 GH抗血清还阻断外源GTH对GH释放和GH mRNA水平的刺激作用。在对等实验中,GTH抗血清显着降低了外源性GH诱导的GH释放和GH mRNA表达。另外,发现外源GH抑制基础GTH释放,并且用GH抗血清治疗在低剂量时升高了GTH分泌,但在高剂量时抑制了GTH产生。这些结果表明,促性腺激素和生长激素之间的局部相互作用可能会形成一个垂体反馈回路,以调节GH的释放和合成。在该模型中,从性腺营养体释放的GTH会在邻近的植物营养体中诱导GH释放和GH产生。分泌的GH维持了对GTH刺激的植物营养体敏感性,同时抑制了性腺营养体中基础GTH的释放。该反馈回路可能代表了一种调节低等脊椎动物中GH释放和合成的新机制。

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