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Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability

Members of the Nuclear eXport Factor (NXF) family are involved in the export of mRNA from the nucleus to the cytoplasm, or hypothesized to play a role in transport of cytoplasmic mRNA. We previously reported on the loss of NXF5 in a male patient with a syndromic form of intellectual disability. To s...

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Autores principales: Vanmarsenille, Lieselot, Verbeeck, Jelle, Belet, Stefanie, Roebroek, Anton J., Van de Putte, Tom, Nevelsteen, Joke, Callaerts-Vegh, Zsuzsanna, D’Hooge, Rudi, Marynen, Peter, Froyen, Guy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3652825/
https://www.ncbi.nlm.nih.gov/pubmed/23675524
http://dx.doi.org/10.1371/journal.pone.0064144
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author Vanmarsenille, Lieselot
Verbeeck, Jelle
Belet, Stefanie
Roebroek, Anton J.
Van de Putte, Tom
Nevelsteen, Joke
Callaerts-Vegh, Zsuzsanna
D’Hooge, Rudi
Marynen, Peter
Froyen, Guy
author_facet Vanmarsenille, Lieselot
Verbeeck, Jelle
Belet, Stefanie
Roebroek, Anton J.
Van de Putte, Tom
Nevelsteen, Joke
Callaerts-Vegh, Zsuzsanna
D’Hooge, Rudi
Marynen, Peter
Froyen, Guy
author_sort Vanmarsenille, Lieselot
collection PubMed
description Members of the Nuclear eXport Factor (NXF) family are involved in the export of mRNA from the nucleus to the cytoplasm, or hypothesized to play a role in transport of cytoplasmic mRNA. We previously reported on the loss of NXF5 in a male patient with a syndromic form of intellectual disability. To study the functional role of NXF5 we identified the mouse counterpart. Based on synteny, mouse Nxf2 is the ortholog of human NXF5. However, we provide several lines of evidence that mouse Nxf7 is the actual functional equivalent of NXF5. Both Nxf7 and NXF5 are predominantly expressed in the brain, show cytoplasmic localization, and present as granules in neuronal dendrites suggesting a role in cytoplasmic mRNA metabolism in neurons. Nxf7 was primarily detected in the pyramidal cells of the hippocampus and in layer V of the cortex. Similar to human NXF2, mouse Nxf2 is highly expressed in testis and shows a nuclear localization. Interestingly, these findings point to a different evolutionary path for both NXF genes in human and mouse. We thus generated and validated Nxf7 knockout mice, which were fertile and did not present any gross anatomical or morphological abnormalities. Expression profiling in the hippocampus and the cortex did not reveal significant changes between wild-type and Nxf7 knockout mice. However, impaired spatial memory was observed in these KO mice when evaluated in the Morris water maze test. In conclusion, our findings provide strong evidence that mouse Nxf7 is the functional counterpart of human NXF5, which might play a critical role in mRNA metabolism in the brain.
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spelling pubmed-36528252013-05-14 Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability Vanmarsenille, Lieselot Verbeeck, Jelle Belet, Stefanie Roebroek, Anton J. Van de Putte, Tom Nevelsteen, Joke Callaerts-Vegh, Zsuzsanna D’Hooge, Rudi Marynen, Peter Froyen, Guy PLoS One Research Article Members of the Nuclear eXport Factor (NXF) family are involved in the export of mRNA from the nucleus to the cytoplasm, or hypothesized to play a role in transport of cytoplasmic mRNA. We previously reported on the loss of NXF5 in a male patient with a syndromic form of intellectual disability. To study the functional role of NXF5 we identified the mouse counterpart. Based on synteny, mouse Nxf2 is the ortholog of human NXF5. However, we provide several lines of evidence that mouse Nxf7 is the actual functional equivalent of NXF5. Both Nxf7 and NXF5 are predominantly expressed in the brain, show cytoplasmic localization, and present as granules in neuronal dendrites suggesting a role in cytoplasmic mRNA metabolism in neurons. Nxf7 was primarily detected in the pyramidal cells of the hippocampus and in layer V of the cortex. Similar to human NXF2, mouse Nxf2 is highly expressed in testis and shows a nuclear localization. Interestingly, these findings point to a different evolutionary path for both NXF genes in human and mouse. We thus generated and validated Nxf7 knockout mice, which were fertile and did not present any gross anatomical or morphological abnormalities. Expression profiling in the hippocampus and the cortex did not reveal significant changes between wild-type and Nxf7 knockout mice. However, impaired spatial memory was observed in these KO mice when evaluated in the Morris water maze test. In conclusion, our findings provide strong evidence that mouse Nxf7 is the functional counterpart of human NXF5, which might play a critical role in mRNA metabolism in the brain. Public Library of Science 2013-05-13 /pmc/articles/PMC3652825/ /pubmed/23675524 http://dx.doi.org/10.1371/journal.pone.0064144 Text en © 2013 Vanmarsenille 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
Vanmarsenille, Lieselot
Verbeeck, Jelle
Belet, Stefanie
Roebroek, Anton J.
Van de Putte, Tom
Nevelsteen, Joke
Callaerts-Vegh, Zsuzsanna
D’Hooge, Rudi
Marynen, Peter
Froyen, Guy
Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title_full Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title_fullStr Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title_full_unstemmed Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title_short Generation and Characterization of an Nxf7 Knockout Mouse to Study NXF5 Deficiency in a Patient with Intellectual Disability
title_sort generation and characterization of an nxf7 knockout mouse to study nxf5 deficiency in a patient with intellectual disability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3652825/
https://www.ncbi.nlm.nih.gov/pubmed/23675524
http://dx.doi.org/10.1371/journal.pone.0064144
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