首页> 外文期刊>The biochemical journal >Co-operation of the 5′ and 3′ untranslated regions of ornithine decarboxylase mRNA and inhibitory role of its 3′ untranslated region in regulating the translational efficiency of hybrid RNA species via cellular factor(s)
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Co-operation of the 5′ and 3′ untranslated regions of ornithine decarboxylase mRNA and inhibitory role of its 3′ untranslated region in regulating the translational efficiency of hybrid RNA species via cellular factor(s)

机译:鸟氨酸脱羧酶mRNA的5'和3'非翻译区的协同作用及其3'非翻译区在通过细胞因子调节杂交RNA物种翻译效率中的抑制作用

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pThe 5′ untranslated region (UTR) has an inhibitory role in the translatability of ornithine decarboxylase (ODC) mRNA and of hybrid mRNA species, whereas the ODC 3′ UTR causes a partial release of this inhibition. We designed experiments to explore whether the co-operation between ODC 5′ UTR and 3′ UTR in the translational regulation is due to a direct interaction of those sequences or whether it is mediated by their interaction with cellular factor(s). We stably transfected Chinese hamster ovary (CHO)-K1 cells and transiently transfected COS-1 cells with expression vectors carrying different chimaeric DNAs having the luciferase (LUC) coding sequence as reporter gene, the ODC 5′ UTR or the ODC 3′ UTR, or both, in the appropriate positions. We compared the results obtained by assaying the LUC activities of both transfected cell lines with each chimaeric DNA with those observed by translating the hybrid RNAs in a translation system iin iv/iitro/i. When the ODC 3′ UTR was present, we observed a partial release of the translation inhibition owing to the ODC 5′ UTR only iin iv/iiiv/io/i. The releasing effect was restored iin iv/iitro/i by the addition of cytoplasmic extracts from wild-type CHO-K1 or COS-1 cells, prepared 2 and 8 h after their release from serum starvation. We also observed a partial inhibition of the translatability of the hybrid RNA owing to the presence of the ODC 3′ UTR itself; the translational efficiency could be rescued by cell extract from 8 h serum-stimulated cells. The co-operation between the ODC-UTRs might be mediated by factors expressed by cells during particular phases of the cell cycle. Excess copies of the ODC-UTRs, expressed iin trans/i, could compete in binding limited amounts of such regulatory factors and remove them from interaction with the endogenous ODC mRNA. This phenomenon should be reflected by modifications of the kinetics of ODC and/or LUC activities during serum stimulation. The overexpression of the ODC 3′ UTR determined an increase in both endogenous ODC activity and LUC activity. Moreover, in the transfectants expressing the hybrid RNA species bearing the ODC 3′ UTR the basal ODC activity is higher than that observed in control cells. We suggest that excess copies of the ODC 3′ UTR mis-regulate the endogenous ODC translatability, probably by tying up regulatory molecules expressed by cells in limited amounts and sequestering them from the ODC mRNA species they should interact with./p
机译:> 5'非翻译区(UTR)在鸟氨酸脱羧酶(ODC)mRNA和杂种mRNA物种的可翻译性中具有抑制作用,而ODC 3'UTR导致这种抑制作用的部分释放。我们设计了实验来研究ODC 5'UTR和3'UTR在翻译调控中的合作是由于这些序列的直接相互作用还是由于它们与细胞因子的相互作用介导的。我们用携带荧光素酶(LUC)编码序列作为报告基因,ODC 5'UTR或ODC 3'UTR的编码序列的不同嵌合DNA的表达载体稳定转染了中国仓鼠卵巢(CHO)-K1细胞和COS-1细胞,或两者都在适当的位置。我们比较了通过分析两种嵌合DNA的两种转染细胞系的LUC活性与通过在 v tro翻译系统中翻译杂合RNA所观察到的结果而比较的结果。当存在ODC 3'UTR时,由于仅在 v i v o 中的ODC 5'UTR,我们观察到翻译抑制的部分释放。我>。通过添加野生型CHO-K1或COS-1细胞的细胞质提取物(在释放后2和8小时制备),在 v itro 中恢复释放效果。从血清饥饿。我们还观察到由于ODC 3'UTR本身的存在,部分抑制了杂交RNA的可翻译性。可以通过从8 h血清刺激的细胞中提取细胞来挽救翻译效率。在细胞周期的特定阶段,ODC-UTR之间的合作可能由细胞表达的因子介导。反式表达的过量ODC-UTR可以竞争结合有限量的此类调节因子,并将其从与内源性ODC mRNA的相互作用中移除。这种现象应通过血清刺激过程中ODC和/或LUC活性的动力学变化来反映。 ODC 3'UTR的过表达决定了内源性ODC活性和LUC活性均增加。此外,在表达带有ODC 3'UTR的杂合RNA种类的转染子中,基础ODC活性高于对照细胞中观察到的活性。我们认为,过量复制的ODC 3'UTR可能会通过限制细胞表达的调控分子并将其与应该与之相互作用的ODC mRNA种类隔离,从而错误调节内源性ODC可翻译性。

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