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Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism

Intellectual disability is a neurodevelopmental disorder that affects 2-3% of the general population. Syndromic forms of intellectual disability frequently have a genetic basis and are often accompanied by additional developmental anomalies. Pathogenic variants in components of TATA-binding protein...

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Autores principales: Leid, Jamison, Gray, Ryan, Rakita, Peter, Koenig, Andrew L., Tripathy, Rohan, Fitzpatrick, James A. J., Kaufman, Charles, Solnica-Krezel, Lilianna, Lavine, Kory J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10354717/
https://www.ncbi.nlm.nih.gov/pubmed/37746814
http://dx.doi.org/10.1242/bio.059905
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author Leid, Jamison
Gray, Ryan
Rakita, Peter
Koenig, Andrew L.
Tripathy, Rohan
Fitzpatrick, James A. J.
Kaufman, Charles
Solnica-Krezel, Lilianna
Lavine, Kory J.
author_facet Leid, Jamison
Gray, Ryan
Rakita, Peter
Koenig, Andrew L.
Tripathy, Rohan
Fitzpatrick, James A. J.
Kaufman, Charles
Solnica-Krezel, Lilianna
Lavine, Kory J.
author_sort Leid, Jamison
collection PubMed
description Intellectual disability is a neurodevelopmental disorder that affects 2-3% of the general population. Syndromic forms of intellectual disability frequently have a genetic basis and are often accompanied by additional developmental anomalies. Pathogenic variants in components of TATA-binding protein associated factors (TAFs) have recently been identified in a subset of patients with intellectual disability, craniofacial hypoplasia, and congenital heart disease. This syndrome has been termed as a TAFopathy and includes mutations in TATA binding protein (TBP), TAF1, TAF2, and TAF6. The underlying mechanism by which TAFopathies give rise to neurodevelopmental, craniofacial, and cardiac abnormalities remains to be defined. Through a forward genetic screen in zebrafish, we have recovered a recessive mutant phenotype characterized by craniofacial hypoplasia, ventricular hypoplasia, heart failure at 96 h post-fertilization and lethality, and show it is caused by a nonsense mutation in taf5. CRISPR/CAS9 mediated gene editing revealed that these defects where phenocopied by mutations in taf1 and taf5. Mechanistically, taf5-/- zebrafish displayed misregulation in metabolic gene expression and metabolism as evidenced by RNA sequencing, respiration assays, and metabolite studies. Collectively, these findings suggest that the TAF complex may contribute to neurologic, craniofacial, and cardiac development through regulation of metabolism.
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spelling pubmed-103547172023-07-20 Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism Leid, Jamison Gray, Ryan Rakita, Peter Koenig, Andrew L. Tripathy, Rohan Fitzpatrick, James A. J. Kaufman, Charles Solnica-Krezel, Lilianna Lavine, Kory J. Biol Open Research Article Intellectual disability is a neurodevelopmental disorder that affects 2-3% of the general population. Syndromic forms of intellectual disability frequently have a genetic basis and are often accompanied by additional developmental anomalies. Pathogenic variants in components of TATA-binding protein associated factors (TAFs) have recently been identified in a subset of patients with intellectual disability, craniofacial hypoplasia, and congenital heart disease. This syndrome has been termed as a TAFopathy and includes mutations in TATA binding protein (TBP), TAF1, TAF2, and TAF6. The underlying mechanism by which TAFopathies give rise to neurodevelopmental, craniofacial, and cardiac abnormalities remains to be defined. Through a forward genetic screen in zebrafish, we have recovered a recessive mutant phenotype characterized by craniofacial hypoplasia, ventricular hypoplasia, heart failure at 96 h post-fertilization and lethality, and show it is caused by a nonsense mutation in taf5. CRISPR/CAS9 mediated gene editing revealed that these defects where phenocopied by mutations in taf1 and taf5. Mechanistically, taf5-/- zebrafish displayed misregulation in metabolic gene expression and metabolism as evidenced by RNA sequencing, respiration assays, and metabolite studies. Collectively, these findings suggest that the TAF complex may contribute to neurologic, craniofacial, and cardiac development through regulation of metabolism. The Company of Biologists Ltd 2023-07-13 /pmc/articles/PMC10354717/ /pubmed/37746814 http://dx.doi.org/10.1242/bio.059905 Text en © 2023. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0 (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Leid, Jamison
Gray, Ryan
Rakita, Peter
Koenig, Andrew L.
Tripathy, Rohan
Fitzpatrick, James A. J.
Kaufman, Charles
Solnica-Krezel, Lilianna
Lavine, Kory J.
Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title_full Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title_fullStr Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title_full_unstemmed Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title_short Deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with TAFopathies through perturbations in metabolism
title_sort deletion of taf1 and taf5 in zebrafish capitulate cardiac and craniofacial abnormalities associated with tafopathies through perturbations in metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10354717/
https://www.ncbi.nlm.nih.gov/pubmed/37746814
http://dx.doi.org/10.1242/bio.059905
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