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首页> 外文期刊>Nucleic acids research >Splicing of constitutive upstream introns is essential for the recognition of intra-exonic suboptimal splice sites in the thrombopoietin gene
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Splicing of constitutive upstream introns is essential for the recognition of intra-exonic suboptimal splice sites in the thrombopoietin gene

机译:组成型上游内含子的剪接对于识别血小板生成素基因中的外显子内次佳剪接位点至关重要

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摘要

The human thrombopoietin (TPO) gene, which codes for the principal cytokine involved in platelet maturation, shows a peculiar alternative splicing of its last exon, where an intra-exonic 116 nt alternative intron is spliced out in a fraction of its mRNA. To characterize the molecular mechanism underlying this alternative splicing, minigenes of TPO genomic constructs with variable exon–intron configurations or carrying exclusively the TPO cDNA were generated and transiently transfected in the Hep3B cell line. We have found that the final rate of the alternative intron splicing is determined by three elements: the presence of upstream constitutive introns, the suboptimal splice sites of the alternative intron and the length of the alternative intron itself. Our results indicate that the recognition of suboptimal intra-exonic splice junctions in the TPO gene is influenced by the assembly of the spliceosome complex on constitutive introns and by a qualitative scanning of the sequence by the transcriptional/splicing machinery complex primed by upstream splicing signals.
机译:编码血小板成熟的主要细胞因子的人类血小板生成素(TPO)基因显示了其最后一个外显子的特殊剪接,其中在其mRNA的一部分中剪接了一个外显子内116 nt替代内含子。为了表征这种选择性剪接的分子机制,产生了具有可变外显子-内含子构型或仅带有TPO cDNA的TPO基因组构建体小基因,并在Hep3B细胞系中进行了瞬时转染。我们发现,替代内含子剪接的最终速率由三个因素决定:上游组成型内含子的存在,替代内含子的次佳剪接位点以及替代内含子本身的长度。我们的结果表明,TPO基因中次优的外显子间剪接连接的识别受本构内含子上剪接体复合体的组装以及上游剪接信号引发的转录/剪接机械复合体对序列的定性扫描的影响。

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