Genes & Development · 2012 · 125 citations · 33 references
Differentiation of neural stem cells (NSCs) to neurons requires the activation of genes controlled by the repressor element 1 (RE1) silencing transcription factor (REST)/neuron-restrictive silencer factor (NRSF) protein complex. Important components of REST/NRSF are phosphatases (termed RNA polymerase II C-terminal domain small phosphatases [CTDSPs]) that inhibit RNA polymerase II and suppress neuronal gene expression in NSCs. Activation of genes controlled by CTDSPs is required for neurogenesis, but how this is achieved is not fully understood. Here we show that ctdsp2 is a target of miR-26b, a microRNA that is encoded in an intron of the ctdsp2 primary transcript. This intrinsic negative feedback loop is inactive in NSCs because miR-26b biogenesis is inhibited at the precursor level. Generation of mature miR-26b is activated during neurogenesis, where it suppresses Ctdsp2 protein expression and is required for neuronal cell differentiation in vivo.
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Combinatorial microRNA target predictions
Azra Krek, Dominic Grün, Matthew N. Poy et al. · Nature Genetics · 2005 · 4.6K citations
Fast and effective prediction of microRNA/target duplexes
Marc Rehmsmeier, Steffen Peter, M. Höchsmann et al. · RNA · 2004 · 2.6K citations · Full text
Argonaute HITS-CLIP decodes microRNA–mRNA interaction maps
Sung Wook, Julie B. Zang, Aldo Mele et al. · Nature · 2009 · 1.8K citations · Full text
Transcriptional Regulation, Functional Genomics, Rna Biology +5
Therapeutic microRNA Delivery Suppresses Tumorigenesis in a Murine Liver Cancer Model
Janaiah Kota, Raghu R. Chivukula, Kathryn A. O’Donnell et al. · Cell · 2009 · 1.7K citations · Full text