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Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice

FgfrL1 is the fifth member of the fibroblast growth factor receptor (Fgfr) family. Studies with FgfrL1 deficient mice have demonstrated that the gene plays an important role during embryonic development. FgfrL1 knock-out mice die at birth as they have a malformed diaphragm and lack metanephric kidne...

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Autores principales: Bluteau, Gilles, Zhuang, Lei, Amann, Ruth, Trueb, Beat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4134281/
https://www.ncbi.nlm.nih.gov/pubmed/25126760
http://dx.doi.org/10.1371/journal.pone.0105210
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author Bluteau, Gilles
Zhuang, Lei
Amann, Ruth
Trueb, Beat
author_facet Bluteau, Gilles
Zhuang, Lei
Amann, Ruth
Trueb, Beat
author_sort Bluteau, Gilles
collection PubMed
description FgfrL1 is the fifth member of the fibroblast growth factor receptor (Fgfr) family. Studies with FgfrL1 deficient mice have demonstrated that the gene plays an important role during embryonic development. FgfrL1 knock-out mice die at birth as they have a malformed diaphragm and lack metanephric kidneys. Similar to the classical Fgfrs, the FgfrL1 protein contains an extracellular part composed of three Ig-like domains that interact with Fgf ligands and heparin. However, the intracellular part of FgfrL1 is not related to the classical receptors and does not possess any tyrosine kinase activity. Curiously enough, the amino acid sequence of this domain is barely conserved among different species, with the exception of three motifs, namely a dileucine peptide, a tandem tyrosine-based motif YXXΦ and a histidine-rich sequence. To investigate the function of the intracellular domain of FgfrL1, we have prepared genetically modified mice that lack the three conserved sequence motifs, but instead contain a GFP cassette (FgfrL1ΔC-GFP). To our surprise, homozygous FgfrL1ΔC-GFP knock-in mice are viable, fertile and phenotypically normal. They do not exhibit any alterations in the diaphragm or the kidney, except for a slight reduction in the number of glomeruli that does not appear to affect life expectancy. In addition, the pancreas of both FgfrL1ΔC-GFP knock-in and FgfrL1 knock-out mice do not show any disturbances in the production of insulin, in contrast to what has been suggested by recent studies. Thus, the conserved motifs of the intracellular FgfrL1 domain are dispensable for organogenesis and normal life. We conclude that the extracellular domain of the protein must conduct the vital functions of FgfrL1.
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spelling pubmed-41342812014-08-19 Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice Bluteau, Gilles Zhuang, Lei Amann, Ruth Trueb, Beat PLoS One Research Article FgfrL1 is the fifth member of the fibroblast growth factor receptor (Fgfr) family. Studies with FgfrL1 deficient mice have demonstrated that the gene plays an important role during embryonic development. FgfrL1 knock-out mice die at birth as they have a malformed diaphragm and lack metanephric kidneys. Similar to the classical Fgfrs, the FgfrL1 protein contains an extracellular part composed of three Ig-like domains that interact with Fgf ligands and heparin. However, the intracellular part of FgfrL1 is not related to the classical receptors and does not possess any tyrosine kinase activity. Curiously enough, the amino acid sequence of this domain is barely conserved among different species, with the exception of three motifs, namely a dileucine peptide, a tandem tyrosine-based motif YXXΦ and a histidine-rich sequence. To investigate the function of the intracellular domain of FgfrL1, we have prepared genetically modified mice that lack the three conserved sequence motifs, but instead contain a GFP cassette (FgfrL1ΔC-GFP). To our surprise, homozygous FgfrL1ΔC-GFP knock-in mice are viable, fertile and phenotypically normal. They do not exhibit any alterations in the diaphragm or the kidney, except for a slight reduction in the number of glomeruli that does not appear to affect life expectancy. In addition, the pancreas of both FgfrL1ΔC-GFP knock-in and FgfrL1 knock-out mice do not show any disturbances in the production of insulin, in contrast to what has been suggested by recent studies. Thus, the conserved motifs of the intracellular FgfrL1 domain are dispensable for organogenesis and normal life. We conclude that the extracellular domain of the protein must conduct the vital functions of FgfrL1. Public Library of Science 2014-08-15 /pmc/articles/PMC4134281/ /pubmed/25126760 http://dx.doi.org/10.1371/journal.pone.0105210 Text en © 2014 Bluteau 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
Bluteau, Gilles
Zhuang, Lei
Amann, Ruth
Trueb, Beat
Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title_full Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title_fullStr Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title_full_unstemmed Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title_short Targeted Disruption of the Intracellular Domain of Receptor FgfrL1 in Mice
title_sort targeted disruption of the intracellular domain of receptor fgfrl1 in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4134281/
https://www.ncbi.nlm.nih.gov/pubmed/25126760
http://dx.doi.org/10.1371/journal.pone.0105210
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