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Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype

Regulatory factor X4 (RFX4) isoform 1 is a recently discovered isoform of the winged helix transcription factor RFX4, which can bind to X-box consensus sequences that are enriched in the promoters of cilia-related genes. Early insertional mutagenesis studies in mice first identified this isoform, an...

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Autores principales: Xu, Ping, Morrison, James P., Foley, Julie F., Stumpo, Deborah J., Ward, Toni, Zeldin, Darryl C., Blackshear, Perry J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5752003/
https://www.ncbi.nlm.nih.gov/pubmed/29298325
http://dx.doi.org/10.1371/journal.pone.0190561
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author Xu, Ping
Morrison, James P.
Foley, Julie F.
Stumpo, Deborah J.
Ward, Toni
Zeldin, Darryl C.
Blackshear, Perry J.
author_facet Xu, Ping
Morrison, James P.
Foley, Julie F.
Stumpo, Deborah J.
Ward, Toni
Zeldin, Darryl C.
Blackshear, Perry J.
author_sort Xu, Ping
collection PubMed
description Regulatory factor X4 (RFX4) isoform 1 is a recently discovered isoform of the winged helix transcription factor RFX4, which can bind to X-box consensus sequences that are enriched in the promoters of cilia-related genes. Early insertional mutagenesis studies in mice first identified this isoform, and demonstrated that it was crucial for mouse brain development. RFX4 isoform 1 is the only RFX4 isoform significantly expressed in the mouse fetal and adult brain. In this study, we evaluated conditional knock-out (KO) mice in which one or two floxed alleles of Rfx4 were deleted early in development through the use of a Sox2-Cre transgene. Heterozygous deletion of Rfx4 resulted in severe, non-communicating congenital hydrocephalus associated with hypoplasia of the subcommissural organ. Homozygous deletion of Rfx4 resulted in formation of a single ventricle in the forebrain, and severe dorsoventral patterning defects in the telencephalon and midbrain at embryonic day 12.5, a collection of phenotypes that resembled human holoprosencephaly. No anatomical abnormalities were noted outside the brain in either case. At the molecular level, transcripts encoded by the cilia-related gene Foxj1 were significantly decreased, and Foxj1 was identified as a direct gene target of RFX4 isoform 1. The phenotypes were similar to those observed in the previous Rfx4 insertional mutagenesis studies. Thus, we provide a novel conditional KO animal model in which to investigate the downstream genes directly and/or indirectly regulated by RFX4 isoform 1. This model could provide new insights into the pathogenesis of obstructive hydrocephalus and holoprosencephaly in humans, both relatively common and disabling birth defects.
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spelling pubmed-57520032018-01-09 Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype Xu, Ping Morrison, James P. Foley, Julie F. Stumpo, Deborah J. Ward, Toni Zeldin, Darryl C. Blackshear, Perry J. PLoS One Research Article Regulatory factor X4 (RFX4) isoform 1 is a recently discovered isoform of the winged helix transcription factor RFX4, which can bind to X-box consensus sequences that are enriched in the promoters of cilia-related genes. Early insertional mutagenesis studies in mice first identified this isoform, and demonstrated that it was crucial for mouse brain development. RFX4 isoform 1 is the only RFX4 isoform significantly expressed in the mouse fetal and adult brain. In this study, we evaluated conditional knock-out (KO) mice in which one or two floxed alleles of Rfx4 were deleted early in development through the use of a Sox2-Cre transgene. Heterozygous deletion of Rfx4 resulted in severe, non-communicating congenital hydrocephalus associated with hypoplasia of the subcommissural organ. Homozygous deletion of Rfx4 resulted in formation of a single ventricle in the forebrain, and severe dorsoventral patterning defects in the telencephalon and midbrain at embryonic day 12.5, a collection of phenotypes that resembled human holoprosencephaly. No anatomical abnormalities were noted outside the brain in either case. At the molecular level, transcripts encoded by the cilia-related gene Foxj1 were significantly decreased, and Foxj1 was identified as a direct gene target of RFX4 isoform 1. The phenotypes were similar to those observed in the previous Rfx4 insertional mutagenesis studies. Thus, we provide a novel conditional KO animal model in which to investigate the downstream genes directly and/or indirectly regulated by RFX4 isoform 1. This model could provide new insights into the pathogenesis of obstructive hydrocephalus and holoprosencephaly in humans, both relatively common and disabling birth defects. Public Library of Science 2018-01-03 /pmc/articles/PMC5752003/ /pubmed/29298325 http://dx.doi.org/10.1371/journal.pone.0190561 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Xu, Ping
Morrison, James P.
Foley, Julie F.
Stumpo, Deborah J.
Ward, Toni
Zeldin, Darryl C.
Blackshear, Perry J.
Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title_full Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title_fullStr Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title_full_unstemmed Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title_short Conditional ablation of the RFX4 isoform 1 transcription factor: Allele dosage effects on brain phenotype
title_sort conditional ablation of the rfx4 isoform 1 transcription factor: allele dosage effects on brain phenotype
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5752003/
https://www.ncbi.nlm.nih.gov/pubmed/29298325
http://dx.doi.org/10.1371/journal.pone.0190561
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