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非洲爪蟾垂体中间部阿黑皮素原基因的转录及转录后调控

Transcriptional and posttranscriptional regulation of the proopiomelanocortin gene in the pars intermedia of the pituitary gland of Xenopus laevis.

作者信息

Ayoubi T A, Jenks B G, Roubos E W, Martens G J

机构信息

Department of Animal Physiology, University of Nijmegen, The Netherlands.

出版信息

Endocrinology. 1992 Jun;130(6):3560-6. doi: 10.1210/endo.130.6.1597153.

Abstract

In the melanotrope cells of the intermediate pituitary gland of the amphibian Xenopus laevis, expression of the POMC gene is under physiological control, i.e. it is 20- to 30-fold higher in animals adapted to a black background compared to animals adapted to a white background. To investigate whether changes in POMC messenger RNA stability contribute to this difference in expression, a steady state kinetic model for mRNA degradation was used to determine the half-life of POMC mRNA during the induction and deinduction of POMC gene expression in melanotrope cells. During induction of the POMC gene the half-life of POMC mRNA was 3- to 4-fold longer than during deinduction. This difference in mRNA stability is, however, not sufficient to account for the 20- to 30-fold difference in the steady state levels of POMC mRNA between the two physiological conditions. Results from experiments with the protein synthesis inhibitor cycloheximide and the mRNA synthesis inhibitor 5,6-dichloro-1-beta-D-ribofuranosylbenzidimidazole suggest 1) that during induction of POMC gene expression no de novo protein synthesis is required and, 2) that deinduction of POMC gene expression requires transcriptional activation of an mRNA-degradation system. Pulse-labeling experiments with [3H]uridine showed that in neurointermediate lobes of white-adapted animals there is an 8-fold higher amount of newly synthesized POMC mRNA than in lobes of black animals. This suggests a fast in vitro induction of POMC gene transcription. The dopamine D2-receptor agonist apomorphine decreased POMC mRNA biosynthesis about 5-fold, which confirms that regulation of POMC gene expression includes a transcriptional component. In conclusion, our results demonstrate that during the physiological process of background adaptation the regulation of POMC gene expression in Xenopus melanotrope cells is exerted by alterations in POMC gene transcription as well as in POMC mRNA stability.

摘要

在两栖动物非洲爪蟾垂体中间叶的促黑素细胞中,阿黑皮素原(POMC)基因的表达受生理调控,即与适应白色背景的动物相比,适应黑色背景的动物中该基因的表达水平高20至30倍。为了研究POMC信使核糖核酸(mRNA)稳定性的变化是否导致了这种表达差异,我们使用了一个mRNA降解的稳态动力学模型来确定促黑素细胞中POMC基因表达诱导和去诱导过程中POMC mRNA的半衰期。在POMC基因诱导过程中,POMC mRNA的半衰期比去诱导过程长3至4倍。然而,这种mRNA稳定性的差异不足以解释两种生理状态下POMC mRNA稳态水平20至30倍的差异。用蛋白质合成抑制剂环己酰亚胺和mRNA合成抑制剂5,6 - 二氯 - 1 - β - D - 呋喃核糖基苯并咪唑进行的实验结果表明:1)在POMC基因表达诱导过程中不需要从头合成蛋白质;2)POMC基因表达的去诱导需要mRNA降解系统的转录激活。用[³H]尿苷进行的脉冲标记实验表明,在适应白色背景的动物的神经中间叶中,新合成的POMC mRNA量比适应黑色背景的动物的叶中高8倍。这表明POMC基因转录在体外可快速诱导。多巴胺D2受体激动剂阿扑吗啡使POMC mRNA生物合成减少约5倍,这证实了POMC基因表达的调控包括转录成分。总之,我们的结果表明,在背景适应的生理过程中,非洲爪蟾促黑素细胞中POMC基因表达的调控是通过POMC基因转录以及POMC mRNA稳定性的改变来实现的。

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