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Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis

Transgenesis has been a mainstay of mouse genetics for over 30 yr, providing numerous models of human disease and critical genetic tools in widespread use today. Generated through the random integration of DNA fragments into the host genome, transgenesis can lead to insertional mutagenesis if a codi...

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Autores principales: Goodwin, Leslie O., Splinter, Erik, Davis, Tiffany L., Urban, Rachel, He, Hao, Braun, Robert E., Chesler, Elissa J., Kumar, Vivek, van Min, Max, Ndukum, Juliet, Philip, Vivek M., Reinholdt, Laura G., Svenson, Karen, White, Jacqueline K., Sasner, Michael, Lutz, Cathleen, Murray, Stephen A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6396414/
https://www.ncbi.nlm.nih.gov/pubmed/30659012
http://dx.doi.org/10.1101/gr.233866.117
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author Goodwin, Leslie O.
Splinter, Erik
Davis, Tiffany L.
Urban, Rachel
He, Hao
Braun, Robert E.
Chesler, Elissa J.
Kumar, Vivek
van Min, Max
Ndukum, Juliet
Philip, Vivek M.
Reinholdt, Laura G.
Svenson, Karen
White, Jacqueline K.
Sasner, Michael
Lutz, Cathleen
Murray, Stephen A.
author_facet Goodwin, Leslie O.
Splinter, Erik
Davis, Tiffany L.
Urban, Rachel
He, Hao
Braun, Robert E.
Chesler, Elissa J.
Kumar, Vivek
van Min, Max
Ndukum, Juliet
Philip, Vivek M.
Reinholdt, Laura G.
Svenson, Karen
White, Jacqueline K.
Sasner, Michael
Lutz, Cathleen
Murray, Stephen A.
author_sort Goodwin, Leslie O.
collection PubMed
description Transgenesis has been a mainstay of mouse genetics for over 30 yr, providing numerous models of human disease and critical genetic tools in widespread use today. Generated through the random integration of DNA fragments into the host genome, transgenesis can lead to insertional mutagenesis if a coding gene or an essential element is disrupted, and there is evidence that larger scale structural variation can accompany the integration. The insertion sites of only a tiny fraction of the thousands of transgenic lines in existence have been discovered and reported, due in part to limitations in the discovery tools. Targeted locus amplification (TLA) provides a robust and efficient means to identify both the insertion site and content of transgenes through deep sequencing of genomic loci linked to specific known transgene cassettes. Here, we report the first large-scale analysis of transgene insertion sites from 40 highly used transgenic mouse lines. We show that the transgenes disrupt the coding sequence of endogenous genes in half of the lines, frequently involving large deletions and/or structural variations at the insertion site. Furthermore, we identify a number of unexpected sequences in some of the transgenes, including undocumented cassettes and contaminating DNA fragments. We demonstrate that these transgene insertions can have phenotypic consequences, which could confound certain experiments, emphasizing the need for careful attention to control strategies. Together, these data show that transgenic alleles display a high rate of potentially confounding genetic events and highlight the need for careful characterization of each line to assure interpretable and reproducible experiments.
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spelling pubmed-63964142019-03-18 Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis Goodwin, Leslie O. Splinter, Erik Davis, Tiffany L. Urban, Rachel He, Hao Braun, Robert E. Chesler, Elissa J. Kumar, Vivek van Min, Max Ndukum, Juliet Philip, Vivek M. Reinholdt, Laura G. Svenson, Karen White, Jacqueline K. Sasner, Michael Lutz, Cathleen Murray, Stephen A. Genome Res Resource Transgenesis has been a mainstay of mouse genetics for over 30 yr, providing numerous models of human disease and critical genetic tools in widespread use today. Generated through the random integration of DNA fragments into the host genome, transgenesis can lead to insertional mutagenesis if a coding gene or an essential element is disrupted, and there is evidence that larger scale structural variation can accompany the integration. The insertion sites of only a tiny fraction of the thousands of transgenic lines in existence have been discovered and reported, due in part to limitations in the discovery tools. Targeted locus amplification (TLA) provides a robust and efficient means to identify both the insertion site and content of transgenes through deep sequencing of genomic loci linked to specific known transgene cassettes. Here, we report the first large-scale analysis of transgene insertion sites from 40 highly used transgenic mouse lines. We show that the transgenes disrupt the coding sequence of endogenous genes in half of the lines, frequently involving large deletions and/or structural variations at the insertion site. Furthermore, we identify a number of unexpected sequences in some of the transgenes, including undocumented cassettes and contaminating DNA fragments. We demonstrate that these transgene insertions can have phenotypic consequences, which could confound certain experiments, emphasizing the need for careful attention to control strategies. Together, these data show that transgenic alleles display a high rate of potentially confounding genetic events and highlight the need for careful characterization of each line to assure interpretable and reproducible experiments. Cold Spring Harbor Laboratory Press 2019-03 /pmc/articles/PMC6396414/ /pubmed/30659012 http://dx.doi.org/10.1101/gr.233866.117 Text en © 2019 Goodwin et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Resource
Goodwin, Leslie O.
Splinter, Erik
Davis, Tiffany L.
Urban, Rachel
He, Hao
Braun, Robert E.
Chesler, Elissa J.
Kumar, Vivek
van Min, Max
Ndukum, Juliet
Philip, Vivek M.
Reinholdt, Laura G.
Svenson, Karen
White, Jacqueline K.
Sasner, Michael
Lutz, Cathleen
Murray, Stephen A.
Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title_full Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title_fullStr Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title_full_unstemmed Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title_short Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
title_sort large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6396414/
https://www.ncbi.nlm.nih.gov/pubmed/30659012
http://dx.doi.org/10.1101/gr.233866.117
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