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An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome

We have successfully used comparative genomics to identify putative regulatory elements within the human genome that contribute to the tissue specific expression of neuropeptides such as galanin and receptors such as CB1. However, a previous inability to rapidly delete these elements from the mouse...

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Autores principales: Hay, Elizabeth Anne, Khalaf, Abdulla Razak, Marini, Pietro, Brown, Andrew, Heath, Karyn, Sheppard, Darrin, MacKenzie, Alasdair
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5529291/
https://www.ncbi.nlm.nih.gov/pubmed/27866656
http://dx.doi.org/10.1016/j.npep.2016.11.003
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author Hay, Elizabeth Anne
Khalaf, Abdulla Razak
Marini, Pietro
Brown, Andrew
Heath, Karyn
Sheppard, Darrin
MacKenzie, Alasdair
author_facet Hay, Elizabeth Anne
Khalaf, Abdulla Razak
Marini, Pietro
Brown, Andrew
Heath, Karyn
Sheppard, Darrin
MacKenzie, Alasdair
author_sort Hay, Elizabeth Anne
collection PubMed
description We have successfully used comparative genomics to identify putative regulatory elements within the human genome that contribute to the tissue specific expression of neuropeptides such as galanin and receptors such as CB1. However, a previous inability to rapidly delete these elements from the mouse genome has prevented optimal assessment of their function in-vivo. This has been solved using CAS9/CRISPR genome editing technology which uses a bacterial endonuclease called CAS9 that, in combination with specifically designed guide RNA (gRNA) molecules, cuts specific regions of the mouse genome. However, reports of “off target” effects, whereby the CAS9 endonuclease is able to cut sites other than those targeted, limits the appeal of this technology. We used cytoplasmic microinjection of gRNA and CAS9 mRNA into 1-cell mouse embryos to rapidly generate enhancer knockout mouse lines. The current study describes our analysis of the genomes of these enhancer knockout lines to detect possible off-target effects. Bioinformatic analysis was used to identify the most likely putative off-target sites and to design PCR primers that would amplify these sequences from genomic DNA of founder enhancer deletion mouse lines. Amplified DNA was then sequenced and blasted against the mouse genome sequence to detect off-target effects. Using this approach we were unable to detect any evidence of off-target effects in the genomes of three founder lines using any of the four gRNAs used in the analysis. This study suggests that the problem of off-target effects in transgenic mice have been exaggerated and that CAS9/CRISPR represents a highly effective and accurate method of deleting putative neuropeptide gene enhancer sequences from the mouse genome.
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spelling pubmed-55292912017-08-08 An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome Hay, Elizabeth Anne Khalaf, Abdulla Razak Marini, Pietro Brown, Andrew Heath, Karyn Sheppard, Darrin MacKenzie, Alasdair Neuropeptides Article We have successfully used comparative genomics to identify putative regulatory elements within the human genome that contribute to the tissue specific expression of neuropeptides such as galanin and receptors such as CB1. However, a previous inability to rapidly delete these elements from the mouse genome has prevented optimal assessment of their function in-vivo. This has been solved using CAS9/CRISPR genome editing technology which uses a bacterial endonuclease called CAS9 that, in combination with specifically designed guide RNA (gRNA) molecules, cuts specific regions of the mouse genome. However, reports of “off target” effects, whereby the CAS9 endonuclease is able to cut sites other than those targeted, limits the appeal of this technology. We used cytoplasmic microinjection of gRNA and CAS9 mRNA into 1-cell mouse embryos to rapidly generate enhancer knockout mouse lines. The current study describes our analysis of the genomes of these enhancer knockout lines to detect possible off-target effects. Bioinformatic analysis was used to identify the most likely putative off-target sites and to design PCR primers that would amplify these sequences from genomic DNA of founder enhancer deletion mouse lines. Amplified DNA was then sequenced and blasted against the mouse genome sequence to detect off-target effects. Using this approach we were unable to detect any evidence of off-target effects in the genomes of three founder lines using any of the four gRNAs used in the analysis. This study suggests that the problem of off-target effects in transgenic mice have been exaggerated and that CAS9/CRISPR represents a highly effective and accurate method of deleting putative neuropeptide gene enhancer sequences from the mouse genome. Elsevier 2017-08 /pmc/articles/PMC5529291/ /pubmed/27866656 http://dx.doi.org/10.1016/j.npep.2016.11.003 Text en © 2016 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hay, Elizabeth Anne
Khalaf, Abdulla Razak
Marini, Pietro
Brown, Andrew
Heath, Karyn
Sheppard, Darrin
MacKenzie, Alasdair
An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title_full An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title_fullStr An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title_full_unstemmed An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title_short An analysis of possible off target effects following CAS9/CRISPR targeted deletions of neuropeptide gene enhancers from the mouse genome
title_sort analysis of possible off target effects following cas9/crispr targeted deletions of neuropeptide gene enhancers from the mouse genome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5529291/
https://www.ncbi.nlm.nih.gov/pubmed/27866656
http://dx.doi.org/10.1016/j.npep.2016.11.003
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