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Developmental regulation of RNA processing by Rbfox proteins

Journal Article · · Wiley Interdisciplinary Reviews: RNA
DOI:https://doi.org/10.1002/wrna.1398· OSTI ID:1425412
 [1]
  1. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States). Biological Systems and Engineering Division
The Rbfox genes encode an ancient family of sequence-specific RNA binding proteins (RBPs) that are critical developmental regulators in multiple tissues including skeletal muscle, cardiac muscle, and brain. The hallmark of Rbfox proteins is a single high-affinity RRM domain, highly conserved from insects to humans, that binds preferentially to UGCAUG motifs at diverse regulatory sites in pre-mRNA introns, mRNA 3’UTRs, and pre-miRNAs hairpin structures. These versatile regulatory circuits operate on Rbfox pre-mRNA and mRNA to ensure proper expression of Rbfox1 protein isoforms, which then act on the broader transcriptome to regulate alternative splicing networks, mRNA stability and translation, and microRNA processing. Complex Rbfox expression is encoded in large genes encompassing multiple promoters and alternative splicing options that govern spatiotemporal expression of structurally distinct and tissue-specific protein isoforms with different classes of RNA targets. Nuclear Rbfox1 is a candidate master regulator that binds intronic UGCAUG elements to impact splicing efficiency of target alternative exons, many in transcripts for other splicing regulators. Tissue-specificity of Rbfox-mediated alternative splicing is executed by combinatorial regulation through the integrated activity of Rbfox proteins and synergistic or antagonistic splicing factors. Studies in animal models show that Rbfox1-related genes are critical for diverse developmental processes including germ cell differentiation and memory in Drosophila, neuronal migration and function in mouse brain, myoblast fusion and skeletal muscle function, and normal heart function. Finally, genetic and biochemical evidence suggest that aberrations in Rbfox-regulated circuitry are risk factors for multiple human disorders, especially neurodevelopmental disorders including epilepsy and autism, and cardiac hypertrophy.
Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
National Institutes of Health (NIH); USDOE Office of Science (SC), Biological and Environmental Research (BER)
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
1425412
Journal Information:
Wiley Interdisciplinary Reviews: RNA, Journal Name: Wiley Interdisciplinary Reviews: RNA Journal Issue: 2 Vol. 8; ISSN 1757-7004
Country of Publication:
United States
Language:
English

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Cited By (16)

Ancient antagonism between CELF and RBFOX families tunes mRNA splicing outcomes journal May 2017
Alternative splicing: the pledge, the turn, and the prestige: The key role of alternative splicing in human biological systems journal April 2017
Control of CNS Functions by RNA-Binding Proteins in Neurological Diseases journal May 2018
Study of 300,486 individuals identifies 148 independent genetic loci influencing general cognitive function journal May 2018
Precise temporal regulation of alternative splicing during neural development journal June 2018
MBNL splicing activity depends on RNA binding site structural context journal June 2018
Precise temporal regulation of alternative splicing during neural development posted_content January 2018
Whole-transcriptome RNA editing analysis in single cortical neurons links locus 15q11 with psychiatric illness posted_content October 2020
When one becomes many-Alternative splicing in β-cell function and failure journal September 2018
Cryptic sequence features in the active postmortem transcriptome journal September 2018
Cortical interneuron development: a tale of time and space journal October 2017
Study of 300,486 individuals identifies 148 independent genetic loci influencing general cognitive function. text January 2018
Overexpression of a Non-Muscle RBFOX2 Isoform Triggers Cardiac Conduction Defects in Myotonic Dystrophy journal January 2019
An alternative splicing switch in FLNB promotes the mesenchymal cell state in human breast cancer journal July 2018
Rbfox1 up-regulation impairs BDNF-dependent hippocampal LTP by dysregulating TrkB isoform expression levels journal August 2019
Precise temporal regulation of alternative splicing during neural development text January 2018

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