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Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice

BACKGROUND: Velo-cardio-facial syndrome/DiGeorge syndrome (VCFS/DGS) is caused by a 1.5-3 Mb microdeletion of chromosome 22q11.2, frequently referred to as 22q11.2 deletion syndrome (22q11DS). This region includes TBX1, a T-box transcription factor gene that contributes to the etiology of 22q11DS. T...

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Autores principales: Freyer, Laina, Nowotschin, Sonja, Pirity, Melinda K, Baldini, Antonio, Morrow, Bernice E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765320/
https://www.ncbi.nlm.nih.gov/pubmed/23971992
http://dx.doi.org/10.1186/1471-213X-13-33
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author Freyer, Laina
Nowotschin, Sonja
Pirity, Melinda K
Baldini, Antonio
Morrow, Bernice E
author_facet Freyer, Laina
Nowotschin, Sonja
Pirity, Melinda K
Baldini, Antonio
Morrow, Bernice E
author_sort Freyer, Laina
collection PubMed
description BACKGROUND: Velo-cardio-facial syndrome/DiGeorge syndrome (VCFS/DGS) is caused by a 1.5-3 Mb microdeletion of chromosome 22q11.2, frequently referred to as 22q11.2 deletion syndrome (22q11DS). This region includes TBX1, a T-box transcription factor gene that contributes to the etiology of 22q11DS. The requirement for TBX1 in mammalian development is dosage-sensitive, such that loss-of-function (LOF) and gain-of-function (GOF) of TBX1 in both mice and humans results in disease relevant congenital malformations. RESULTS: To further gain insight into the role of Tbx1 in development, we have targeted the Rosa26 locus to generate a new GOF mouse model in which a Tbx1-GFP fusion protein is expressed conditionally using the Cre/LoxP system. Tbx1-GFP expression is driven by the endogenous Rosa26 promoter resulting in ectopic and persistent expression. Tbx1 is pivotal for proper ear and heart development; ectopic activation of Tbx1-GFP in the otic vesicle by Pax2-Cre and Foxg1-Cre represses neurogenesis and produces morphological defects of the inner ear. Overexpression of a single copy of Tbx1-GFP using Tbx1(Cre/+) was viable, while overexpression of both copies resulted in neonatal lethality with cardiac outflow tract defects. We have partially rescued inner ear and heart anomalies in Tbx1(Cre/-) null embryos by expression of Tbx1-GFP. CONCLUSIONS: We have generated a new mouse model to conditionally overexpress a GFP-tagged Tbx1 protein in vivo. This provides a useful tool to investigate in vivo direct downstream targets and protein binding partners of Tbx1.
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spelling pubmed-37653202013-09-07 Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice Freyer, Laina Nowotschin, Sonja Pirity, Melinda K Baldini, Antonio Morrow, Bernice E BMC Dev Biol Methodology Article BACKGROUND: Velo-cardio-facial syndrome/DiGeorge syndrome (VCFS/DGS) is caused by a 1.5-3 Mb microdeletion of chromosome 22q11.2, frequently referred to as 22q11.2 deletion syndrome (22q11DS). This region includes TBX1, a T-box transcription factor gene that contributes to the etiology of 22q11DS. The requirement for TBX1 in mammalian development is dosage-sensitive, such that loss-of-function (LOF) and gain-of-function (GOF) of TBX1 in both mice and humans results in disease relevant congenital malformations. RESULTS: To further gain insight into the role of Tbx1 in development, we have targeted the Rosa26 locus to generate a new GOF mouse model in which a Tbx1-GFP fusion protein is expressed conditionally using the Cre/LoxP system. Tbx1-GFP expression is driven by the endogenous Rosa26 promoter resulting in ectopic and persistent expression. Tbx1 is pivotal for proper ear and heart development; ectopic activation of Tbx1-GFP in the otic vesicle by Pax2-Cre and Foxg1-Cre represses neurogenesis and produces morphological defects of the inner ear. Overexpression of a single copy of Tbx1-GFP using Tbx1(Cre/+) was viable, while overexpression of both copies resulted in neonatal lethality with cardiac outflow tract defects. We have partially rescued inner ear and heart anomalies in Tbx1(Cre/-) null embryos by expression of Tbx1-GFP. CONCLUSIONS: We have generated a new mouse model to conditionally overexpress a GFP-tagged Tbx1 protein in vivo. This provides a useful tool to investigate in vivo direct downstream targets and protein binding partners of Tbx1. BioMed Central 2013-08-23 /pmc/articles/PMC3765320/ /pubmed/23971992 http://dx.doi.org/10.1186/1471-213X-13-33 Text en Copyright © 2013 Freyer et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Article
Freyer, Laina
Nowotschin, Sonja
Pirity, Melinda K
Baldini, Antonio
Morrow, Bernice E
Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title_full Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title_fullStr Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title_full_unstemmed Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title_short Conditional and constitutive expression of a Tbx1-GFP fusion protein in mice
title_sort conditional and constitutive expression of a tbx1-gfp fusion protein in mice
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765320/
https://www.ncbi.nlm.nih.gov/pubmed/23971992
http://dx.doi.org/10.1186/1471-213X-13-33
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