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Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development

Fibroblast growth factor 10 (Fgf10) is a key regulator of diverse organogenetic programs during mouse development, particularly branching morphogenesis. Fgf10-null mice suffer from lung and limb agenesis as well as cecal and colonic atresia and are thus not viable. To date, the Mlcv1v-nLacZ-24 trans...

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Autores principales: El Agha, Elie, Al Alam, Denise, Carraro, Gianni, MacKenzie, BreAnne, Goth, Kerstin, De Langhe, Stijn P., Voswinckel, Robert, Hajihosseini, Mohammad K., Rehan, Virender K., Bellusci, Saverio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374781/
https://www.ncbi.nlm.nih.gov/pubmed/22719891
http://dx.doi.org/10.1371/journal.pone.0038452
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author El Agha, Elie
Al Alam, Denise
Carraro, Gianni
MacKenzie, BreAnne
Goth, Kerstin
De Langhe, Stijn P.
Voswinckel, Robert
Hajihosseini, Mohammad K.
Rehan, Virender K.
Bellusci, Saverio
author_facet El Agha, Elie
Al Alam, Denise
Carraro, Gianni
MacKenzie, BreAnne
Goth, Kerstin
De Langhe, Stijn P.
Voswinckel, Robert
Hajihosseini, Mohammad K.
Rehan, Virender K.
Bellusci, Saverio
author_sort El Agha, Elie
collection PubMed
description Fibroblast growth factor 10 (Fgf10) is a key regulator of diverse organogenetic programs during mouse development, particularly branching morphogenesis. Fgf10-null mice suffer from lung and limb agenesis as well as cecal and colonic atresia and are thus not viable. To date, the Mlcv1v-nLacZ-24 transgenic mouse strain (referred to as Fgf10(LacZ)), which carries a LacZ insertion 114 kb upstream of exon 1 of Fgf10 gene, has been the only strain to allow transient lineage tracing of Fgf10-positive cells. Here, we describe a novel Fgf10(Cre-ERT2) knock-in line (Fgf10(iCre)) in which a Cre-ERT2-IRES-YFP cassette has been introduced in frame with the ATG of exon 1 of Fgf10 gene. Our studies show that Cre-ERT2 insertion disrupts Fgf10 function. However, administration of tamoxifen to Fgf10(iCre); Tomato(flox) double transgenic embryos or adult mice results in specific labeling of Fgf10-positive cells, which can be lineage-traced temporally and spatially. Moreover, we show that the Fgf10(iCre) line can be used for conditional gene inactivation in an inducible fashion during early developmental stages. We also provide evidence that transcription factors located in the first intron of Fgf10 gene are critical for maintaining Fgf10 expression over time. Thus, the Fgf10(iCre) line should serve as a powerful tool to explore the functions of Fgf10 in a controlled and stage-specific manner.
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spelling pubmed-33747812012-06-20 Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development El Agha, Elie Al Alam, Denise Carraro, Gianni MacKenzie, BreAnne Goth, Kerstin De Langhe, Stijn P. Voswinckel, Robert Hajihosseini, Mohammad K. Rehan, Virender K. Bellusci, Saverio PLoS One Research Article Fibroblast growth factor 10 (Fgf10) is a key regulator of diverse organogenetic programs during mouse development, particularly branching morphogenesis. Fgf10-null mice suffer from lung and limb agenesis as well as cecal and colonic atresia and are thus not viable. To date, the Mlcv1v-nLacZ-24 transgenic mouse strain (referred to as Fgf10(LacZ)), which carries a LacZ insertion 114 kb upstream of exon 1 of Fgf10 gene, has been the only strain to allow transient lineage tracing of Fgf10-positive cells. Here, we describe a novel Fgf10(Cre-ERT2) knock-in line (Fgf10(iCre)) in which a Cre-ERT2-IRES-YFP cassette has been introduced in frame with the ATG of exon 1 of Fgf10 gene. Our studies show that Cre-ERT2 insertion disrupts Fgf10 function. However, administration of tamoxifen to Fgf10(iCre); Tomato(flox) double transgenic embryos or adult mice results in specific labeling of Fgf10-positive cells, which can be lineage-traced temporally and spatially. Moreover, we show that the Fgf10(iCre) line can be used for conditional gene inactivation in an inducible fashion during early developmental stages. We also provide evidence that transcription factors located in the first intron of Fgf10 gene are critical for maintaining Fgf10 expression over time. Thus, the Fgf10(iCre) line should serve as a powerful tool to explore the functions of Fgf10 in a controlled and stage-specific manner. Public Library of Science 2012-06-13 /pmc/articles/PMC3374781/ /pubmed/22719891 http://dx.doi.org/10.1371/journal.pone.0038452 Text en El Agha et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
El Agha, Elie
Al Alam, Denise
Carraro, Gianni
MacKenzie, BreAnne
Goth, Kerstin
De Langhe, Stijn P.
Voswinckel, Robert
Hajihosseini, Mohammad K.
Rehan, Virender K.
Bellusci, Saverio
Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title_full Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title_fullStr Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title_full_unstemmed Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title_short Characterization of a Novel Fibroblast Growth Factor 10 (Fgf10) Knock-In Mouse Line to Target Mesenchymal Progenitors during Embryonic Development
title_sort characterization of a novel fibroblast growth factor 10 (fgf10) knock-in mouse line to target mesenchymal progenitors during embryonic development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374781/
https://www.ncbi.nlm.nih.gov/pubmed/22719891
http://dx.doi.org/10.1371/journal.pone.0038452
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