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全球范围内发现的红细胞长非编码 RNA 揭示了红细胞成熟的新型调控因子。

Global discovery of erythroid long noncoding RNAs reveals novel regulators of red cell maturation.

机构信息

Whitehead Institute for Biomedical Research, Cambridge, MA;

出版信息

Blood. 2014 Jan 23;123(4):570-81. doi: 10.1182/blood-2013-10-530683. Epub 2013 Nov 7.

Abstract

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 (lncRNAs) 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 lncRNA 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 lncRNAs 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 lncRNAs, readily available through an online resource, and shows that diverse types of lncRNAs participate in the regulatory circuitry underlying erythropoiesis.

摘要

红细胞生成在多个水平上受到调控,以确保在多种生理条件下成熟红细胞的正常生成。为了探究长非编码 RNA(lncRNA)在此过程中的作用,我们对分化的小鼠胎肝红细胞的多聚腺苷酸化和非多聚腺苷酸化 RNA 进行了超过 10 亿个 RNA-seq 读段的检测,鉴定了 655 个 lncRNA 基因,这些基因不仅包括基因间、反义、内含子,还包括假基因和增强子位点。其中有 100 多个基因是以前未被识别的,且高度红细胞特异性。通过整合染色质状态、转录因子占据和组织表达模式的全基因组调查,我们确定了多个在红细胞生成过程中动态表达的 lncRNA,这些 lncRNA 表现出表观遗传调控,并受到关键的红细胞转录因子 GATA1、TAL1 或 KLF1 的靶向调控。我们重点关注了 12 个这样的候选基因,发现它们定位于细胞核内,并表现出复杂的发育表达模式。敲除这些候选基因严重损害了红细胞的成熟,抑制了细胞体积缩小和随后的去核过程。其中一个候选基因 alncRNA-EC7 由一个增强子转录,是激活邻近基因编码 BAND3 所必需的。我们的研究提供了一个注释的红细胞 lncRNA 目录,可通过在线资源获得,并表明不同类型的 lncRNA 参与了红细胞生成的调控网络。

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