Unknown,Transcriptomics,Genomics,Proteomics

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RBFOX1 Splicing and Transcriptional Regulation in Neurons


ABSTRACT: We used RNA sequencing to identify the RBFOX1 splicing network at a genome-wide level in primary human neural stem cells during differentiation. We observe that RBFOX1 regulates a large set of alternative splicing events implicated in neurogenesis and cell maintenance. Subsequent alterations in gene expression define an additional transcriptional network regulated by RBFOX1 involved in neurodevelopmental pathways remarkably parallel to those affected by splicing. RNA sequencing at a 75bp single-end read scale was performed using polyA-enriched RNA from 5 biological replicates of primary human neural progenitor cell lines generated by lentiviral-mediated knockdown of GFP (control) or RBFOX1 and differentiated for 4 weeks.

ORGANISM(S): Homo sapiens

SUBMITTER: Brent Fogel 

PROVIDER: E-GEOD-36710 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

RBFOX1 regulates both splicing and transcriptional networks in human neuronal development.

Fogel Brent L BL   Wexler Eric E   Wahnich Amanda A   Friedrich Tara T   Vijayendran Chandran C   Gao Fuying F   Parikshak Neelroop N   Konopka Genevieve G   Geschwind Daniel H DH  

Human molecular genetics 20120623 19


RNA splicing plays a critical role in the programming of neuronal differentiation and, consequently, normal human neurodevelopment, and its disruption may underlie neurodevelopmental and neuropsychiatric disorders. The RNA-binding protein, fox-1 homolog (RBFOX1; also termed A2BP1 or FOX1), is a neuron-specific splicing factor predicted to regulate neuronal splicing networks clinically implicated in neurodevelopmental disease, including autism spectrum disorder (ASD), but only a few targets have  ...[more]

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