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Retinoic acid regulates ornithine decarboxylase gene expression at the transcriptional level.

机译:维甲酸在转录水平上调节鸟氨酸脱羧酶基因的表达。

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摘要

Retinoic acid (RA) is important for normal mammalian development and growth. Ornithine decarboxylase (ODC) is the first and rate-limiting enzyme in the biosynthesis of the polyamines, and we have previously shown that ODC mRNA levels are suppressed by RA in human skin cells. Using HeLa cells, we now show that treatment with 0.5 microM RA for 24 h suppresses endogenous ODC mRNA levels and the expression of a transfected ODC/chloramphenicol acetyltransferase plasmid (Kpn-ODCCAT), containing sequences from -1450 to +810 of the human ODC gene. Co-transfection with either the alpha-RA receptor (alpha-RAR) or a chimeric alpha-RA/oestrogen receptor (alpha-RAER) followed by treatment with the cognate hormone suppresses expression of Kpn-ODCCAT and Not-ODCCAT, which contains sequences from -250 to +514. Liganded alpha-RAR suppresses the activity of Kpn-ODCCAT more markedly than does liganded alpha-RAER (98% and 80% suppression, respectively), whereas both receptors have very similar effects on Not-ODCCAT expression (73% and 67% suppression, respectively). The unliganded alpha-RAR suppresses Kpn-ODCCAT by 76%, whereas unliganded alpha-RAER has no significant effect. These data show that RA regulates ODC-gene expression at the transcriptional level, and that alpha-RAR, but not alpha-RAER, can confer full hormonal responsiveness. This suggests that the activating function present in the alpha-RAR ligand-binding domain is required for full transcriptional regulation.
机译:维甲酸(RA)对于正常的哺乳动物发育和成长很重要。鸟氨酸脱羧酶(ODC)是多胺生物合成中的第一个酶和限速酶,我们以前已经证明RA可以抑制人皮肤细胞中的ODC mRNA水平。现在,我们使用HeLa细胞显示,用0.5 microM RA处理24小时可抑制内源性ODC mRNA水平和转染的ODC /氯霉素乙酰转移酶质粒(Kpn-ODCCAT)的表达,该质粒包含人ODC的-1450至+810序列基因。与alpha-RA受体(alpha-RAR)或嵌合的alpha-RA /雌激素受体(alpha-RAER)共转染,然后用同源激素处理可抑制Kpn-ODCCAT和Not-ODCCAT的表达,后者含有序列从-250到+514。固定的α-RAR比配体的α-RAER抑制Kpn-ODCCAT的活性更显着(分别抑制98%和80%),而两种受体对Not-ODCCAT的表达有非常相似的影响(抑制73%和67%,分别)。未配体的α-RAR将Kpn-ODCCAT抑制了76%,而未配体的α-RAER没有明显的作用。这些数据表明,RA在转录水平上调节ODC基因的表达,而alpha-RAR而不是alpha-RAER可以赋予完整的激素反应性。这表明存在于α-RAR配体结合域中的激活功能是完整转录调节所必需的。

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