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GT1-7细胞中促性腺激素释放激素基因的转录后调控

Post-transcriptional regulation of the gonadotropin-releasing hormone gene in GT1-7 cells.

作者信息

Gore A C, Yeo T T, Ho A, Roberts J L

机构信息

Fishberg Research Center for Neurobiology, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

J Neuroendocrinol. 1997 Apr;9(4):271-7. doi: 10.1046/j.1365-2826.1997.00579.x.

Abstract

GT1-7 cells respond to treatment with the phorbol ester, phorbol 12-myristate 13-acetate (PMA), with an inhibition of transcription of the proGnRH gene and decreases in GnRH mRNA levels. However, the timing of this decrease in GnRH mRNA levels suggests that a decrease in GnRH mRNA stability may be involved in addition to an inhibition of transcription of the proGnRH gene. To address this possibility, we treated GT1-7 cells with 100 nM PMA for 4 h and then monitored GnRH mRNA levels over time after blockade of GnRH gene transcription with DRB. PMA treatment caused GnRH mRNA half-life to decrease from 30 to 11 h. Then, to verify this observation, we examined changes in GnRH mRNA poly (A) tail length, which may be a reflection of mRNA turnover, following treatment of GT1-7 cells with PMA or vehicle for 0, 4, 8 or 24 h. The poly (A) tail was removed from half of the GT1 cytoplasmic RNA sample by digestion with RNase H and the difference in GnRH mRNA size with and without RNase H treatment was determined by Northern hybridization. PMA treatment (4 and 8 h) resulted in a significant decrease in the length of the GnRH mRNA poly (A) tail, consistent with a decrease in GnRH mRNA stability. This finding suggests that GnRH mRNA turnover is inducible by substances such as PMA. Our study indicates that a change in mRNA stability is one of a multiplicity of levels at which GnRH gene expression is regulated.

摘要

GT1-7细胞对佛波酯(佛波醇12-肉豆蔻酸酯13-乙酸酯,PMA)处理有反应,即促性腺激素释放激素(proGnRH)基因转录受到抑制,GnRH mRNA水平降低。然而,GnRH mRNA水平下降的时间表明,除了proGnRH基因转录受到抑制外,GnRH mRNA稳定性的降低可能也参与其中。为了探究这种可能性,我们用100 nM PMA处理GT1-7细胞4小时,然后在用5,6-二氯-1-β-D-呋喃核糖基苯并咪唑(DRB)阻断GnRH基因转录后,随时间监测GnRH mRNA水平。PMA处理使GnRH mRNA半衰期从30小时降至11小时。然后,为了验证这一观察结果,我们在用PMA或溶剂处理GT1-7细胞0、4、8或24小时后,检测了GnRH mRNA聚腺苷酸(poly (A))尾长度的变化,这可能反映了mRNA的周转情况。用核糖核酸酶H(RNase H)消化从一半GT1细胞质RNA样品中去除poly (A)尾,通过Northern杂交确定有无RNase H处理时GnRH mRNA大小的差异。PMA处理(4小时和8小时)导致GnRH mRNA poly (A)尾长度显著缩短,这与GnRH mRNA稳定性降低一致。这一发现表明,GnRH mRNA周转可被PMA等物质诱导。我们的研究表明,mRNA稳定性的变化是GnRH基因表达调控的多个水平之一。

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