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Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding

foxP2, a forkhead-domain transcription factor, is critical for speech and language development in humans, but its role in the establishment of CNS connectivity is unclear. While in vitro studies have identified axon guidance molecules as targets of foxP2 regulation, and cell culture assays suggest a...

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Autores principales: Xing, Lingyan, Hoshijima, Kazuyuki, Grunwald, David J., Fujimoto, Esther, Quist, Tyler S., Sneddon, Jacob, Chien, Chi-Bin, Stevenson, Tamara J., Bonkowsky, Joshua L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3427223/
https://www.ncbi.nlm.nih.gov/pubmed/22937139
http://dx.doi.org/10.1371/journal.pone.0043968
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author Xing, Lingyan
Hoshijima, Kazuyuki
Grunwald, David J.
Fujimoto, Esther
Quist, Tyler S.
Sneddon, Jacob
Chien, Chi-Bin
Stevenson, Tamara J.
Bonkowsky, Joshua L.
author_facet Xing, Lingyan
Hoshijima, Kazuyuki
Grunwald, David J.
Fujimoto, Esther
Quist, Tyler S.
Sneddon, Jacob
Chien, Chi-Bin
Stevenson, Tamara J.
Bonkowsky, Joshua L.
author_sort Xing, Lingyan
collection PubMed
description foxP2, a forkhead-domain transcription factor, is critical for speech and language development in humans, but its role in the establishment of CNS connectivity is unclear. While in vitro studies have identified axon guidance molecules as targets of foxP2 regulation, and cell culture assays suggest a role for foxP2 in neurite outgrowth, in vivo studies have been lacking regarding a role for foxP2 in axon pathfinding. We used a modified zinc finger nuclease methodology to generate mutations in the zebrafish foxP2 gene. Using PCR-based high resolution melt curve analysis (HRMA) of G0 founder animals, we screened and identified three mutants carrying nonsense mutations in the 2(nd) coding exon: a 17 base-pair (bp) deletion, an 8bp deletion, and a 4bp insertion. Sequence analysis of cDNA confirmed that these were frameshift mutations with predicted early protein truncations. Homozygous mutant fish were viable and fertile, with unchanged body morphology, and no apparent differences in CNS apoptosis, proliferation, or patterning at embryonic stages. There was a reduction in expression of the known foxP2 target gene cntnap2 that was rescued by injection of wild-type foxP2 transcript. When we examined axon pathfinding using a pan-axonal marker or transgenic lines, including a foxP2-neuron-specific enhancer, we did not observe any axon guidance errors. Our findings suggest that foxP2 is not necessary for axon pathfinding during development.
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spelling pubmed-34272232012-08-30 Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding Xing, Lingyan Hoshijima, Kazuyuki Grunwald, David J. Fujimoto, Esther Quist, Tyler S. Sneddon, Jacob Chien, Chi-Bin Stevenson, Tamara J. Bonkowsky, Joshua L. PLoS One Research Article foxP2, a forkhead-domain transcription factor, is critical for speech and language development in humans, but its role in the establishment of CNS connectivity is unclear. While in vitro studies have identified axon guidance molecules as targets of foxP2 regulation, and cell culture assays suggest a role for foxP2 in neurite outgrowth, in vivo studies have been lacking regarding a role for foxP2 in axon pathfinding. We used a modified zinc finger nuclease methodology to generate mutations in the zebrafish foxP2 gene. Using PCR-based high resolution melt curve analysis (HRMA) of G0 founder animals, we screened and identified three mutants carrying nonsense mutations in the 2(nd) coding exon: a 17 base-pair (bp) deletion, an 8bp deletion, and a 4bp insertion. Sequence analysis of cDNA confirmed that these were frameshift mutations with predicted early protein truncations. Homozygous mutant fish were viable and fertile, with unchanged body morphology, and no apparent differences in CNS apoptosis, proliferation, or patterning at embryonic stages. There was a reduction in expression of the known foxP2 target gene cntnap2 that was rescued by injection of wild-type foxP2 transcript. When we examined axon pathfinding using a pan-axonal marker or transgenic lines, including a foxP2-neuron-specific enhancer, we did not observe any axon guidance errors. Our findings suggest that foxP2 is not necessary for axon pathfinding during development. Public Library of Science 2012-08-24 /pmc/articles/PMC3427223/ /pubmed/22937139 http://dx.doi.org/10.1371/journal.pone.0043968 Text en © 2012 Xing 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
Xing, Lingyan
Hoshijima, Kazuyuki
Grunwald, David J.
Fujimoto, Esther
Quist, Tyler S.
Sneddon, Jacob
Chien, Chi-Bin
Stevenson, Tamara J.
Bonkowsky, Joshua L.
Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title_full Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title_fullStr Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title_full_unstemmed Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title_short Zebrafish foxP2 Zinc Finger Nuclease Mutant Has Normal Axon Pathfinding
title_sort zebrafish foxp2 zinc finger nuclease mutant has normal axon pathfinding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3427223/
https://www.ncbi.nlm.nih.gov/pubmed/22937139
http://dx.doi.org/10.1371/journal.pone.0043968
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