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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Global discovery of erythroid long noncoding RNAs reveals novel regulators of red cell maturation
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Global discovery of erythroid long noncoding RNAs reveals novel regulators of red cell maturation

机译:红系长非编码RNA的全球发现揭示了红细胞成熟的新型调节剂

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Erythropoiesis is regulated at multiple levels to ensure the proper generation of mature red cells under multiple physiological conditions. To probe the contribution of long noncoding RNAs (IncRNAs) to this process, we examined >1 billion RNA-seq reads of polyadenylated and nonpolyadenylated RNA from differentiating mouse fetal liver red blood cells and identified 655 IncRNA genes including not only intergenic, antisense, and intronic but also pseudogene and enhancer loci. More than 100 of these genes are previously unrecognized and highly erythroid specific. By integrating genome-wide surveys of chromatin states, transcription factor occupancy, and tissue expression patterns, we identify multiple IncRNAs that are dynamically expressed during erythropoiesis, show epigenetic regulation, and are targeted by key erythroid transcription factors GATA1, TAL1, or KLF1. We focus on 12 such candidates and find that they are nuclear-localized and exhibit complex developmental expression patterns. Depleting them severely impaired erythrocyte maturation, inhibiting cell size reduction and subsequent enucleation. One of them, alncRNA-EC7, is transcribed from an enhancer and is specifically needed for activation of the neighboring gene encoding BAND 3. Our study provides an annotated catalog of erythroid IncRNAs, readily available through an online resource, and shows that diverse types of IncRNAs participate in the regulatory circuitry underlying erythropoiesis.
机译:红细胞生成受到多个水平的调节,以确保在多种生理条件下正确生成成熟的红细胞。为了探究长非编码RNA(IncRNA)对这一过程的贡献,我们检查了来自分化小鼠胎儿肝红细胞的聚腺苷酸化和非聚腺苷酸化RNA的超过10亿个RNA-seq读数,并鉴定了655个IncRNA基因,不仅包括基因间,反义和内含子,还有假基因和增强子基因座。这些基因中的100多个以前是无法识别的,并且是高度红系特异性的。通过整合染色质状态,转录因子占有率和组织表达模式的全基因组调查,我们鉴定了在红细胞生成过程中动态表达的多种IncRNA,显示表观遗传调控,并被关键的类红细胞转录因子GATA1,TAL1或KLF1靶向。我们专注于12个这样的候选人,并发现他们是核定位的,并表现出复杂的发展表达模式。耗尽它们会严重损害红细胞的成熟,抑制细胞大小的减小和随后的去核。其中一个名为alncRNA-EC7,是从增强子转录而来的,是激活编码BAND 3的邻近基因所特别需要的。我们的研究提供了带注释的类红细胞IncRNA目录,可通过在线资源轻松获得,并显示了多种类型的IncRNA参与促红细胞生成的调节电路。

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