生物
染色质
计算生物学
基因间区
遗传学
否定选择
同源盒蛋白纳米
基因组
长非编码RNA
保守序列
功能基因组学
核糖核酸
SOX2
基因组学
基因
胚胎干细胞
诱导多能干细胞
基序列
作者
Mitchell Guttman,Ido Amit,Manuel Garber,Courtney E. French,Michael F. Lin,David M. Feldser,Maite Huarte,Or Zuk,Bryce W. Carey,John P. Cassady,Moran N. Cabili,Rudolf Jaenisch,Tarjei S. Mikkelsen,Tyler Jacks,Nir Hacohen,B Bernstein,Manolis Kellis,Aviv Regev,John L. Rinn,Eric S. Lander
出处
期刊:Nature
[Nature Portfolio]
日期:2009-02-01
卷期号:458 (7235): 223-227
被引量:4023
摘要
There is growing recognition that mammalian cells produce many thousands of large intergenic transcripts. However, the functional significance of these transcripts has been particularly controversial. Although there are some well-characterized examples, most (>95%) show little evidence of evolutionary conservation and have been suggested to represent transcriptional noise. Here we report a new approach to identifying large non-coding RNAs using chromatin-state maps to discover discrete transcriptional units intervening known protein-coding loci. Our approach identified ~1,600 large multi-exonic RNAs across four mouse cell types. In sharp contrast to previous collections, these large intervening non-coding RNAs (lincRNAs) show strong purifying selection in their genomic loci, exonic sequences and promoter regions, with greater than 95% showing clear evolutionary conservation. We also developed a functional genomics approach that assigns putative functions to each lincRNA, demonstrating a diverse range of roles for lincRNAs in processes from embryonic stem cell pluripotency to cell proliferation. We obtained independent functional validation for the predictions for over 100 lincRNAs, using cell-based assays. In particular, we demonstrate that specific lincRNAs are transcriptionally regulated by key transcription factors in these processes such as p53, NFκB, Sox2, Oct4 (also known as Pou5f1) and Nanog. Together, these results define a unique collection of functional lincRNAs that are highly conserved and implicated in diverse biological processes.
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