Awobuluyi Marc, Vazhappilly Rema, Sucher Nikolaus J
Department of Neurobiology, Harvard Medical School, Boston, Massachusetts, USA.
Neurosignals. 2003 Nov-Dec;12(6):283-91. doi: 10.1159/000075310.
PC12 cells contain NR1 mRNA but lack significant expression of NR1 protein suggesting translational or posttranslational regulation. Translational activity of NR1 mRNA in PC12 cells was examined by sucrose gradient fractionation and by heterologous luciferase NR1 gene expression studies. The cosedimentation and association of NR1 mRNA with large polyribosomes (polysomes) confirmed the translatability of NR1 message in PC12 cells. Possible initiation and/or elongation defects during the translation of NR1 mRNAs were investigated by cyclohexamide treatment. The marked decline in the number of ribosomes associated with NR1 mRNA after prolonged exposure to cyclohexamide suggested that initiation was limiting translation of NR1 mRNA in PC12 cells. Consequently, the effect of the 5' and 3' untranslated regions (UTRs) on translation was examined using fusion constructs consisting of the luciferase coding region fused to either or both the 5' UTR and 3' UTR of NR1. The transfection of PC12 cells with the luciferase NR1-UTR fusion constructs revealed that the 3' UTR of NR1 had a significant inhibitory effect on luciferase expression. In contrast, the 5' UTR of NR1 had no inhibitory effect on mRNA translation in PC12 cells. The results from this study indicate that the translation of NR1 mRNA in PC12 cells may be impeded at initiation and this inhibition may be regulated at least in part through the 3' UTR of NR1.
PC12细胞含有NR1信使核糖核酸(mRNA),但缺乏显著的NR1蛋白表达,这表明存在翻译或翻译后调控。通过蔗糖梯度分级分离和异源荧光素酶NR1基因表达研究,检测了PC12细胞中NR1 mRNA的翻译活性。NR1 mRNA与大多核糖体(多核糖体)的共沉降和结合证实了PC12细胞中NR1信息的可翻译性。通过环己酰亚胺处理,研究了NR1 mRNA翻译过程中可能的起始和/或延伸缺陷。长时间暴露于环己酰亚胺后,与NR1 mRNA相关的核糖体数量显著下降,这表明起始过程限制了PC12细胞中NR1 mRNA的翻译。因此,使用由荧光素酶编码区与NR1的5'非翻译区(UTR)或3'UTR或两者融合组成的融合构建体,检测了5'和3'非翻译区对翻译的影响。用荧光素酶NR1-UTR融合构建体转染PC12细胞表明,NR1的3'UTR对荧光素酶表达有显著抑制作用。相比之下,NR1的5'UTR对PC12细胞中的mRNA翻译没有抑制作用。本研究结果表明,PC12细胞中NR1 mRNA的翻译可能在起始阶段受到阻碍,这种抑制可能至少部分通过NR1的3'UTR进行调控。