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首页> 外文期刊>Genes to cells : >Nucleocytoplasmic transport of fluorescent mRNA in living mammalian cells: nuclear mRNA export is coupled to ongoing gene transcription.
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Nucleocytoplasmic transport of fluorescent mRNA in living mammalian cells: nuclear mRNA export is coupled to ongoing gene transcription.

机译:荧光mRNA在活哺乳动物细胞中的核质转运:核mRNA的输出与正在进行的基因转录有关。

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摘要

In eukaryotic cells, export of mRNA from the nucleus to the cytoplasm is one of the essential steps in gene expression. To examine mechanisms involved in the nucleocytoplasmic transport of mRNA, we microinjected fluorescently labeled fushi tarazu (ftz) pre-mRNA into the nuclei of HeLa cells. The injected intron-containing ftz pre-mRNA was distributed to the SC35 speckles and exported to the cytoplasm after splicing by an energy-requiring active process. In contrast, the injected intron-less ftz mRNA was diffusely distributed in the nucleus and then presumably degraded. Interestingly, export of the ftz pre-mRNA was inhibited by treatment with transcriptional inhibitors (actinomycin D, alpha-amanitin or DRB). Cells treated with transcriptional inhibitor showed foci enriched with the injected mRNA, which localize side by side with SC35 speckles. Those nuclear foci, referred to as TIDRs (transcriptional-inactivation dependent RNA domain), do not overlap with paraspeckles. In addition, in situ hybridizationanalysis revealed that the export of endogenous poly(A)+ mRNA is also affected by transcriptional inactivation. These results suggest that nuclear mRNA export is coupled to ongoing gene transcription in mammalian cells.
机译:在真核细胞中,mRNA从细胞核输出到细胞质是基因表达的重要步骤之一。为了检查参与mRNA的核质运输的机制,我们将荧光标记的fushi tarazu(ftz)pre-mRNA微注射到HeLa细胞核中。注入的含内含子的ftz pre-mRNA通过需要能量的活性过程进行剪接后分配到SC35斑点并输出到细胞质。相反,注入的无内含子的ftz mRNA在核中分散分布,然后可能降解。有趣的是,通过用转录抑制剂(放线菌素D,α-amanitin或DRB)处理来抑制ftz pre-mRNA的输出。用转录抑制剂处理的细胞显示出富含注入的mRNA的病灶,其与SC35斑点并排定位。这些核病灶称为TIDR(转录失活依赖性RNA结构域),不与副斑点重叠。此外,原位杂交分析表明内源性poly(A)+ mRNA的出口也受到转录失活的影响。这些结果表明,核mRNA的输出与哺乳动物细胞中正在进行的基因转录有关。

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