Multiple knockout mouse models reveal lincRNAs are required for life and brain development

Many studies are uncovering functional roles for long noncoding RNAs (lncRNAs), yet few have been tested for in vivo relevance through genetic ablation in animal models. To investigate the functional relevance of lncRNAs in various physiological conditions, we have developed a collection of 18 lncRN...

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书目详细资料
Main Authors: Goff, Loyal, Kellis, Manolis, Sauvageau, Martin, Lodato, Simona, Bonev, Boyan, Groff, Abigail F., Gerhardinger, Chiara, Sanchez-Gomez, Diana B., Hacisuleyman, Ezgi, Li, Eric, Spence, Matthew, Liapis, Stephen C., Mallard, William, Morse, Michael, Swerdel, Mavis R., D'Ecclessis, Michael F., Moore, Jennifer C., Lai, Venus, Gong, Guochun, Yancopoulos, George D., Frendewey, David, Hart, Ronald P., Valenzuela, David M., Arlotta, Paola, Rinn, John L.
其他作者: Massachusetts Institute of Technology. Computer Science and Artificial Intelligence Laboratory
格式: 文件
语言:en_US
出版: eLife Sciences Publications, Ltd. 2014
在线阅读:http://hdl.handle.net/1721.1/87015
实物特征
总结:Many studies are uncovering functional roles for long noncoding RNAs (lncRNAs), yet few have been tested for in vivo relevance through genetic ablation in animal models. To investigate the functional relevance of lncRNAs in various physiological conditions, we have developed a collection of 18 lncRNA knockout strains in which the locus is maintained transcriptionally active. Initial characterization revealed peri- and postnatal lethal phenotypes in three mutant strains (Fendrr, Peril, and Mdgt), the latter two exhibiting incomplete penetrance and growth defects in survivors. We also report growth defects for two additional mutant strains (linc–Brn1b and linc–Pint). Further analysis revealed defects in lung, gastrointestinal tract, and heart in Fendrr[superscript −/−] neonates, whereas linc–Brn1b[superscript −/−] mutants displayed distinct abnormalities in the generation of upper layer II–IV neurons in the neocortex. This study demonstrates that lncRNAs play critical roles in vivo and provides a framework and impetus for future larger-scale functional investigation into the roles of lncRNA molecules.