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Inhibition of Translation of mRNAs Containing γ-Monomethylphosphate Cap Structure in Frog Oocytes and in Mammalian Cells

机译:蛙卵母细胞和哺乳动物细胞中含有γ-单甲基磷酸酯帽结构的mRNA的翻译抑制

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摘要

The γ-monomethylphosphate cap structure is found in several eukaryotic small RNAs including nuclear U6, U6atac, 7SK, plant nucleolar U3, and rodent cytoplasmic B2 RNAs. In the case of human U6 snRNA, the 5′ end sequence corresponding to nucleotides 1–25 serves as the capping signal and directs the formation of methylphosphate cap structure. In this study, we show that the U6 RNA capping signal, when introduced at the 5′ end of RNAs, can efficiently direct the methylphosphate cap formation in RNAs of up to 2.7 kb long, as well as in different mRNAs. These data show that the methylphosphate capping signal functions in mRNAs having different primary sequences and different lengths. Presence of the methylphosphate cap structure on the 5′ end of a luciferase mRNA with EMCV 5′ noncoding region, which is translated in an IRES-dependent pathway, resulted in a 6- to 100-fold inhibition of translation compared to the same mRNA with a 5′ triphosphate when microinjected into frog oocytes or expressed in mouse cells in tissue culture. Thus, conversion of the pppG structure to a methyl-pppG structure on the 5′ end of an mRNA, which is translated in an IRES-dependent pathway, results in severe inhibition of translation. These data show that the 5′ end motif of mRNAs plays an important role even in the IRES-mediated mRNA translation.
机译:γ-单甲基磷酸酯帽结构存在于几个真核小RNA中,包括核U6,U6atac,7SK,植物核仁U3和啮齿动物胞质B2 RNA。对于人类U6 snRNA,对应于核苷酸1–25的5'末端序列用作封盖信号,并指导磷酸甲基封盖结构的形成。在这项研究中,我们显示了在RNA的5'端引入U6 RNA的加帽信号后,可以有效地指导长达2.7 kb的RNA以及不同的mRNA中甲基磷酸酯帽的形成。这些数据表明磷酸甲酯封端信号在具有不同一级序列和不同长度的mRNA中起作用。萤光素酶mRNA的5'端具有EMCV 5'非编码区的甲基磷酸酯帽结构的存在,该结构以IRES依赖性途径进行翻译,与同等的mRNA相比,翻译抑制作用为6至100倍当显微注射到青蛙卵母细胞中或在组织培养的小鼠细胞中表达时,产生5'三磷酸。因此,以IRES依赖性途径翻译的在mRNA的5'端的pppG结构到甲基-pppG结构的转化导致严重的翻译抑制。这些数据表明,即使在IRES介导的mRNA翻译中,mRNA的5'末端基序也起重要作用。

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