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Refinement of inducible gene deletion in embryos of pregnant mice

CreERT2‐mediated gene recombination is widely applied in developmental biology research. Activation of CreERT2 is typically achieved by injection of tamoxifen in an oily vehicle into the peritoneal cavity of mid‐gestation pregnant mice. This can be technically challenging and adversely impacts welfa...

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Autores principales: Savery, Dawn, Maniou, Eirini, Culshaw, Lucy H., Greene, Nicholas D. E., Copp, Andrew J., Galea, Gabriel L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003956/
https://www.ncbi.nlm.nih.gov/pubmed/31793758
http://dx.doi.org/10.1002/bdr2.1628
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author Savery, Dawn
Maniou, Eirini
Culshaw, Lucy H.
Greene, Nicholas D. E.
Copp, Andrew J.
Galea, Gabriel L.
author_facet Savery, Dawn
Maniou, Eirini
Culshaw, Lucy H.
Greene, Nicholas D. E.
Copp, Andrew J.
Galea, Gabriel L.
author_sort Savery, Dawn
collection PubMed
description CreERT2‐mediated gene recombination is widely applied in developmental biology research. Activation of CreERT2 is typically achieved by injection of tamoxifen in an oily vehicle into the peritoneal cavity of mid‐gestation pregnant mice. This can be technically challenging and adversely impacts welfare. Here we characterize three refinements to this technique: Pipette feeding (not gavage) of tamoxifen, ex vivo CreERT2 activation in whole embryo culture and injection of cell‐permeable TAT‐Cre into Cre‐negative cultured embryos. We demonstrate that pipette feeding of tamoxifen solution to the mother on various days of gestation reliably activates embryonic CreERT2, illustrated here using β‐Actin (CreERT2), Sox2 (CreERT2), T (CreERT2), and Nkx1.2 (CreERT2). Pipette feeding of tamoxifen induces dose‐dependent recombination of Rosa26 (mTmG) reporters when administered at E8.5. Activation of two neuromesodermal progenitor‐targeting Cre drivers, T (CreERT2), and Nkx1.2 (CreERT2), produces comparable neuroepithelial lineage tracing. Dose‐dependent CreERT2 activation can also be achieved by brief exposure to 4OH‐tamoxifen in whole embryo culture, allowing temporal control of gene deletion and eliminating the need to treat pregnant mice. Rosa26 (mTmG) reporter recombination can also be achieved regionally by injecting TAT‐Cre into embryonic tissues at the start of culture. This allows greater spatial control over Cre activation than can typically be achieved with endogenous CreERT2, for example by injecting TAT‐Cre on one side of the midline. We hope that our description and application of these techniques will stimulate refinement of experimental methods involving CreERT2 activation for gene deletion and lineage tracing studies. Improved temporal (ex vivo treatment) and spatial (TAT‐Cre injection) control of recombination will also allow previously intractable questions to be addressed.
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spelling pubmed-70039562020-02-11 Refinement of inducible gene deletion in embryos of pregnant mice Savery, Dawn Maniou, Eirini Culshaw, Lucy H. Greene, Nicholas D. E. Copp, Andrew J. Galea, Gabriel L. Birth Defects Res Research Articles CreERT2‐mediated gene recombination is widely applied in developmental biology research. Activation of CreERT2 is typically achieved by injection of tamoxifen in an oily vehicle into the peritoneal cavity of mid‐gestation pregnant mice. This can be technically challenging and adversely impacts welfare. Here we characterize three refinements to this technique: Pipette feeding (not gavage) of tamoxifen, ex vivo CreERT2 activation in whole embryo culture and injection of cell‐permeable TAT‐Cre into Cre‐negative cultured embryos. We demonstrate that pipette feeding of tamoxifen solution to the mother on various days of gestation reliably activates embryonic CreERT2, illustrated here using β‐Actin (CreERT2), Sox2 (CreERT2), T (CreERT2), and Nkx1.2 (CreERT2). Pipette feeding of tamoxifen induces dose‐dependent recombination of Rosa26 (mTmG) reporters when administered at E8.5. Activation of two neuromesodermal progenitor‐targeting Cre drivers, T (CreERT2), and Nkx1.2 (CreERT2), produces comparable neuroepithelial lineage tracing. Dose‐dependent CreERT2 activation can also be achieved by brief exposure to 4OH‐tamoxifen in whole embryo culture, allowing temporal control of gene deletion and eliminating the need to treat pregnant mice. Rosa26 (mTmG) reporter recombination can also be achieved regionally by injecting TAT‐Cre into embryonic tissues at the start of culture. This allows greater spatial control over Cre activation than can typically be achieved with endogenous CreERT2, for example by injecting TAT‐Cre on one side of the midline. We hope that our description and application of these techniques will stimulate refinement of experimental methods involving CreERT2 activation for gene deletion and lineage tracing studies. Improved temporal (ex vivo treatment) and spatial (TAT‐Cre injection) control of recombination will also allow previously intractable questions to be addressed. John Wiley & Sons, Inc. 2019-12-03 2020-01-15 /pmc/articles/PMC7003956/ /pubmed/31793758 http://dx.doi.org/10.1002/bdr2.1628 Text en © 2019 The Authors. Birth Defects Research published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Savery, Dawn
Maniou, Eirini
Culshaw, Lucy H.
Greene, Nicholas D. E.
Copp, Andrew J.
Galea, Gabriel L.
Refinement of inducible gene deletion in embryos of pregnant mice
title Refinement of inducible gene deletion in embryos of pregnant mice
title_full Refinement of inducible gene deletion in embryos of pregnant mice
title_fullStr Refinement of inducible gene deletion in embryos of pregnant mice
title_full_unstemmed Refinement of inducible gene deletion in embryos of pregnant mice
title_short Refinement of inducible gene deletion in embryos of pregnant mice
title_sort refinement of inducible gene deletion in embryos of pregnant mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003956/
https://www.ncbi.nlm.nih.gov/pubmed/31793758
http://dx.doi.org/10.1002/bdr2.1628
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