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首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >Role of glucocorticoids in the regulation of pituitary somatostatin receptor subtype (sst1-sst5) mRNA levels: evidence for direct and somatostatin-mediated effects.
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Role of glucocorticoids in the regulation of pituitary somatostatin receptor subtype (sst1-sst5) mRNA levels: evidence for direct and somatostatin-mediated effects.

机译:糖皮质激素在垂体生长抑素受体亚型(sst1-sst5)mRNA水平调节中的作用:直接和生长抑素介导作用的证据。

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摘要

Glucocorticoids can differentially regulate somatostatin (SRIH) receptor subtype expression depending on the duration of treatment, dose used and tissue type examined. In order to determine if glucocorticoids are critical regulators of pituitary SRIH receptor synthesis in vivo, we examined the effect of adrenalectomy (ADX), with and without dexamethasone (DEX; 200 microg/day for 8 days) treatment, on the relative expression levels of the SRIH receptor subtypes, sst1-sst5, by multiplex RT-PCR. ADX increased pituitary sst2 mRNA levels, but did not significantly alter mRNA levels of the other SRIH receptor subtypes. These findings indicate that pituitary sst2 synthesis is normally under inhibitory control of endogenous glucocorticoids. High-dose DEX resulted in a decrease in sst1-sst4 mRNA and an increase in sst5 mRNA, independent of adrenal status. DEX also decreased sst2, sst3 and sst4 mRNA levels and increased sst5 mRNA levels by short-term in vitro application (10 nM, 4 h) in primary rat pituitary cell cultures, indicating DEX regulation of sst2-sst5 in vivo is at least in part due to a direct action at the level of the pituitary. However, the inhibitory actions of DEX on sst1 mRNA levels observed in vivo were not consistently replicated in vitro. In order to determine if the somatotrope population of the pituitary would display a similar response to DEX, fluorescent-activated cell sorting was used to obtain somatotrope-enriched cultures (>95% growth hormone immunopositive cells). DEX treatment (10 nM, 4 h) of somatotropes decreased sst2 and sst3, but did not alter sst5 mRNA levels. These results indicate that the effects of DEX on sst5 mRNA levels observed in unsorted pituitary cell cultures might be due to changes in sst5 expression in pituitary cell types other than somatotropes. Since excess glucocorticoids are thought to enhance SRIH tone, we also tested if ligand activation of SRIH receptor subtypes in vitro could mimic any of the actions of DEX on SRIH receptor mRNA levels observed in vivo. To this end, unsorted pituitary cell cultures and somatotrope-enriched cultures were treated with SRIH (1 and 100 nM) for 4 h. SRIH increased sst3 and sst5 mRNA levels, in both culture systems. These results suggest that the DEX-induced increase in endogenous SRIH tone may contribute to enhanced sst5 mRNA levels observed in vivo. However, the stimulatory actions of SRIH on sst3 mRNA levels observed in vitro might be overridden by direct inhibitory actions of DEX.
机译:糖皮质激素可根据治疗持续时间,所用剂量和所检查的组织类型差异调节生长抑素(SRIH)受体亚型的表达。为了确定糖皮质激素是否是体内垂体SRIH受体合成的关键调节剂,我们检查了有无地塞米松(DEX; 200微克/天,共8天)治疗对肾上腺切除术(ADX)的相对表达水平的影响。通过多重RT-PCR检测SRIH受体亚型sst1-sst5。 ADX增加垂体sst2 mRNA水平,但没有显着改变其他SRIH受体亚型的mRNA水平。这些发现表明垂体sst2合成通常处于内源性糖皮质激素的抑制控制之下。高剂量DEX导致sst1-sst4 mRNA的减少和sst5 mRNA的增加,与肾上腺状态无关。通过在初级大鼠垂体细胞培养物中短期体外应用(10 nM,4 h),DEX还降低了sst2,sst3和sst4 mRNA的水平,并提高了sst5 mRNA的水平,这表明DEX对体内sst2-sst5的调节至少部分由于在垂体水平直接作用。但是,体内观察到的DEX对sst1 mRNA水平的抑制作用并未在体外持续复制。为了确定垂体生长激素的种群是否会表现出与DEX相似的反应,使用荧光激活细胞分选术来获得富含生长激素的培养物(> 95%生长激素免疫阳性细胞)。促生长素的DEX处理(10 nM,4 h)可降低sst2和sst3,但不会改变sst5 mRNA水平。这些结果表明,DEX对未分选的垂体细胞培养物中sst5 mRNA水平的影响可能是由于生长激素以外的垂体细胞类型中sst5表达的变化。由于认为过量的糖皮质激素可增强SRIH音调,因此我们还测试了体外SRIH受体亚型的配体激活是否可以模拟DEX对体内观察到的SRIH受体mRNA水平的任何作用。为此,将未分选的垂体细胞培养物和富含生长激素的培养物用SRIH(1和100 nM)处理4 h。在两种培养系统中,SRIH均可提高sst3和sst5 mRNA的水平。这些结果表明,DEX诱导的内源性SRIH调的增加可能有助于体内观察到的sst5 mRNA水平提高。然而,SRIH对体外观察到的sst3 mRNA水平的刺激作用可能被DEX的直接抑制作用所取代。

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