The Widespread Impact of Mammalian MicroRNAs on mRNA Repression and Evolution
Top Cited Papers
- 16 December 2005
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 310 (5755), 1817-1821
- https://doi.org/10.1126/science.1121158
Abstract
Thousands of mammalian messenger RNAs are under selective pressure to maintain 7-nucleotide sites matching microRNAs (miRNAs). We found that these conserved targets are often highly expressed at developmental stages before miRNA expression and that their levels tend to fall as the miRNA that targets them begins to accumulate. Nonconserved sites, which outnumber the conserved sites 10 to 1, also mediate repression. As a consequence, genes preferentially expressed at the same time and place as a miRNA have evolved to selectively avoid sites matching the miRNA. This phenomenon of selective avoidance extends to thousands of genes and enables spatial and temporal specificities of miRNAs to be revealed by finding tissues and developmental stages in which messages with corresponding sites are expressed at lower levels.Keywords
This publication has 23 references indexed in Scilit:
- A microRNA polycistron as a potential human oncogeneNature, 2005
- Combinatorial microRNA target predictionsNature Genetics, 2005
- Systematic discovery of regulatory motifs in human promoters and 3′ UTRs by comparison of several mammalsNature, 2005
- Principles of MicroRNA–Target RecognitionPLoS Biology, 2005
- Microarray profiling of microRNAs reveals frequent coexpression with neighboring miRNAs and host genesRNA, 2005
- Conserved Seed Pairing, Often Flanked by Adenosines, Indicates that Thousands of Human Genes are MicroRNA TargetsCell, 2005
- The functions of animal microRNAsNature, 2004
- Identification and Characterization of a Novel Gene, C13orf25 , as a Target for 13q31-q32 Amplification in Malignant LymphomaCancer Research, 2004
- A gene atlas of the mouse and human protein-encoding transcriptomesProceedings of the National Academy of Sciences, 2004
- Prediction of Mammalian MicroRNA TargetsCell, 2003