Literature DB >> 15035981

A small modulatory dsRNA specifies the fate of adult neural stem cells.

Tomoko Kuwabara1, Jenny Hsieh, Kinichi Nakashima, Kazunari Taira, Fred H Gage.   

Abstract

Discovering the molecular mechanisms that regulate neuron-specific gene expression remains a central challenge for CNS research. Here, we report that small, noncoding double-stranded (ds) RNAs play a critical role in mediating neuronal differentiation. The sequence defined by this dsRNA is NRSE/RE1, which is recognized by NRSF/REST, known primarily as a negative transcriptional regulator that restricts neuronal gene expression to neurons. The NRSE dsRNA can trigger gene expression of neuron-specific genes through interaction with NRSF/REST transcriptional machinery, resulting in the transition from neural stem cells with neuron-specific genes silenced by NRSF/REST into cells with neuronal identity that can express neuronal genes. The mechanism of action appears to be mediated through a dsRNA/protein interaction, rather than through siRNA or miRNA. The discovery of small modulatory dsRNAs (smRNAs) extends the important contribution of noncoding RNAs as key regulators of cell behavior at both transcriptional and posttranscriptional levels.

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Year:  2004        PMID: 15035981     DOI: 10.1016/s0092-8674(04)00248-x

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  142 in total

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Review 4.  REST and CoREST are transcriptional and epigenetic regulators of seminal neural fate decisions.

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5.  Rho GTPases mediate the mechanosensitive lineage commitment of neural stem cells.

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Review 6.  RNA activation technique and its applications in cancer research.

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Review 8.  Genetic networks.

Authors:  Steven P Briggs; Tatjana Singer
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9.  Profiling RE1/REST-mediated histone modifications in the human genome.

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10.  Prenatal arsenic exposure alters REST/NRSF and microRNA regulators of embryonic neural stem cell fate in a sex-dependent manner.

Authors:  Christina R Tyler; Matthew T Labrecque; Elizabeth R Solomon; Xun Guo; Andrea M Allan
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