| Literature DB >> 24415997 |
Ilse I G M van de Vondervoort1, Peter M Gordebeke2, Nima Khoshab3, Paul H E Tiesinga2, Jan K Buitelaar4, Tamas Kozicz5, Armaz Aschrafi2, Jeffrey C Glennon1.
Abstract
Recent studies have emphasized an important role for long non-coding RNAs (lncRNA) in epigenetic regulation, development, and disease. Despite growing interest in lncRNAs, the mechanisms by which lncRNAs control cellular processes are still elusive. Improved understanding of these mechanisms is critical, because the majority of the mammalian genome is transcribed, in most cases resulting in non-coding RNA products. Recent studies have suggested the involvement of lncRNA in neurobehavioral and neurodevelopmental disorders, highlighting the functional importance of this subclass of brain-enriched RNAs. Impaired expression of lnRNAs has been implicated in several forms of intellectual disability disorders. However, the role of this family of RNAs in cognitive function is largely unknown. Here we provide an overview of recently identified mechanisms of neuronal development involving lncRNAs, and the consequences of lncRNA deregulation for neurodevelopmental disorders.Entities:
Keywords: autism spectrum disorders; fragile X syndrome; genomic imprinting; intellectual disability; long non-coding RNA; nervous system development; schizophrenia
Year: 2013 PMID: 24415997 PMCID: PMC3874560 DOI: 10.3389/fnmol.2013.00053
Source DB: PubMed Journal: Front Mol Neurosci ISSN: 1662-5099 Impact factor: 5.639
An overview of the lncRNAs identified in neurodevelopmental disorders.
| Disorder | LncRNA | Significance | Reference |
|---|---|---|---|
| PWS | Microdeletions including this cluster cause PWS (phenotype) | ||
| Not expressed in PWS | |||
| Disrupted expression in PWS | |||
| AS | Increased or decreased expression in AS | ||
| FXS | Silenced in FXS patients; knockdown results in alterations in cell cycle regulation and increased apoptotic cell death | ||
| Associated with fragile X syndrome | |||
| Rett syndrome | AK087060 AK081227 | Upregulated in MECP2 KO mice; AK087060 associated with the downregulation of its host gene, GABA receptor subunit Rho 2 (Gabbr2) | |
| DS | Regulates nuclear shutting of NFAT, whose reduced activity leads to DS features | ||
| 2p15-p16.1 microdeletion syndrome | In critical region with three protein-coding genes: BCL11A, PAPOLG, and REL | ||
| MCOPS3 | Modulates expression of SOX2, in which genetic defects cause micropthalmia syndrome 3. | ||
| ASD | Associated with autism in one patient | ||
| Deletions are only found in males with ASD and not in male control individuals. |