Xu Haibo, Yang Xing, Huang Weiren, Ma Yujie, Ke Hao, Zou Li, Yang Qin, Jiao Baowei
State Key Laboratory of Genetic Resources and Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan, People's Republic of China.
Department of Urology, Shenzhen Second People's Hospital, The First Affiliated Hospital of Shenzhen University, Shenzhen, People's Republic of China.
Stem Cells. 2020 Sep 15. doi: 10.1002/stem.3274.
Long noncoding RNAs (lncRNAs), which are crucial for organ development, exhibit cell-specific expression. Thus, transcriptomic analysis based on total tissue (bulk-seq) cannot accurately reflect the expression pattern of lncRNAs. Here, we used high-throughput single-cell RNA-seq data to investigate the role of lncRNAs using the hierarchical model of mammary epithelium. With our comprehensive annotation of the mammary epithelium, lncRNAs showed much greater cell-lineage specific expression than coding genes. The lineage-specific lncRNAs were functionally correlated with lineage commitment through the coding genes via the cis- and trans-effects of lncRNAs. For the working mechanism, lncRNAs formed a triplex structure with the DNA helix to regulate downstream lineage-specific marker genes. We used lncRNA-Carmn as an example to validate the above findings. Carmn, which is specifically expressed in mammary gland stem cells (MaSCs) and basal cells, positively regulated the Wnt signaling ligand Wnt10a through formation of a lncRNA-DNA-DNA triplex, and thus controlled the stemness of MaSCs. Our study suggests that lncRNAs play essential roles in cell-lineage commitment and provides an approach to decipher lncRNA functions based on single-cell RNA-seq data.
长链非编码RNA(lncRNA)对器官发育至关重要,具有细胞特异性表达。因此,基于全组织的转录组分析(批量测序)无法准确反映lncRNA的表达模式。在此,我们使用高通量单细胞RNA测序数据,通过乳腺上皮的分层模型来研究lncRNA的作用。通过我们对乳腺上皮的全面注释,lncRNA显示出比编码基因更强的细胞谱系特异性表达。谱系特异性lncRNA通过lncRNA的顺式和反式作用,通过编码基因在功能上与谱系定向相关。对于作用机制,lncRNA与DNA螺旋形成三链结构以调节下游谱系特异性标记基因。我们以lncRNA-Carmn为例验证上述发现。Carmn在乳腺干细胞(MaSC)和基底细胞中特异性表达,通过形成lncRNA-DNA-DNA三链体正向调节Wnt信号配体Wnt10a,从而控制MaSC的干性。我们的研究表明,lncRNA在细胞谱系定向中起重要作用,并提供了一种基于单细胞RNA测序数据来解读lncRNA功能的方法。