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首页> 外文期刊>Nucleic acids research >A dynamic alternative splicing program regulates gene expression during terminal erythropoiesis
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A dynamic alternative splicing program regulates gene expression during terminal erythropoiesis

机译:动态的选择性剪接程序在终末红细胞生成过程中调节基因表达

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摘要

Alternative pre-messenger RNA splicing remodels the human transcriptome in a spatiotemporal manner during normal development and differentiation. Here we explored the landscape of transcript diversity in the erythroid lineage by RNA-seq analysis of five highly purified populations of morphologically distinct human erythroblasts, representing the last four cell divisions before enucleation. In this unique differentiation system, we found evidence of an extensive and dynamic alternative splicing program encompassing genes with many diverse functions. Alternative splicing was particularly enriched in genes controlling cell cycle, organelle organization, chromatin function and RNA processing. Many alternative exons exhibited differentiation-associated switches in splicing efficiency, mostly in late-stage polychromatophilic and orthochromatophilic erythroblasts, in concert with extensive cellular remodeling that precedes enucleation. A subset of alternative splicing switches introduces premature translation termination codons into selected transcripts in a differentiation stage-specific manner, supporting the hypothesis that alternative splicing-coupled nonsense-mediated decay contributes to regulation of erythroid-expressed genes as a novel part of the overall differentiation program. We conclude that a highly dynamic alternative splicing program in terminally differentiating erythroblasts plays a major role in regulating gene expression to ensure synthesis of appropriate proteome at each stage as the cells remodel in preparation for production of mature red cells.
机译:在正常发育和分化过程中,其他信使前RNA剪接以时空方式重塑人类转录组。在这里,我们通过对五个高度纯化的形态学上不同的人类成红细胞群体进行了RNA-seq分析,探索了红系谱系中转录本多样性的格局,代表了去核前的最后四个细胞分裂。在这个独特的分化系统中,我们发现了一个广泛而动态的可变剪接程序的证据,该程序涵盖了具有多种功能的基因。选择性剪接特别丰富了控制细胞周期,细胞器组织,染色质功能和RNA加工的基因。许多替代性外显子在剪接效率方面表现出分化相关的转换,主要是在晚期多色嗜酸性和正嗜铬性成红细胞中,与去核之前的大量细胞重塑一致。替代剪接开关的一个子集以分化阶段特异的方式将过早的翻译终止密码子引入选定的转录本,支持以下假设:替代剪接耦合的无义介导的衰变有助于调节类红素表达的基因,这是整体分化的新部分程序。我们得出结论,在终末分化成红细胞的过程中,高度动态的替代剪接程序在调节基因表达中起主要作用,以确保在每个阶段重组合适的蛋白质组,从而为生产成熟红细胞的过程中的细胞重塑。

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