Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect

Objective Based on rapid advancement of genetic modification techniques, genomic editing is expected to become the most efficient tool for improvement of economic traits in livestock as well as poultry. In this study, we examined and verified the nickase of mutated CRISPR-associated protein 9 (Cas9)...

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Main Authors: Jeong Hyo Lee, Si Won Kim, Tae Sub Park
Format: Article
Language:English
Published: Asian-Australasian Association of Animal Production Societies 2017-05-01
Series:Asian-Australasian Journal of Animal Sciences
Subjects:
Online Access:http://www.ajas.info/upload/pdf/ajas-30-5-743.pdf
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spelling doaj-18e91776b01a44c3b4412500e3f4f77d2020-11-24T21:52:10ZengAsian-Australasian Association of Animal Production SocietiesAsian-Australasian Journal of Animal Sciences1011-23671976-55172017-05-0130574374810.5713/ajas.16.069523649Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effectJeong Hyo Lee0Si Won Kim1Tae Sub Park2 Graduate School of International Agricultural Technology and Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang 25354, Korea Graduate School of International Agricultural Technology and Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang 25354, Korea Graduate School of International Agricultural Technology and Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang 25354, KoreaObjective Based on rapid advancement of genetic modification techniques, genomic editing is expected to become the most efficient tool for improvement of economic traits in livestock as well as poultry. In this study, we examined and verified the nickase of mutated CRISPR-associated protein 9 (Cas9) to modulate the specific target gene in chicken DF1 cells. Methods Chicken myostatin which inhibits muscle cell growth and differentiation during myogenesis was targeted to be deleted and mutated by the Cas9-D10A nickase. After co-transfection of the nickase expression vector with green fluorescent gene (GFP) gene and targeted multiplex guide RNAs (gRNAs), the GFP-positive cells were sorted out by fluorescence-activated cell sorting procedure. Results Through the genotyping analysis of the knockout cells, the mutant induction efficiency was 100% in the targeted site. Number of the deleted nucleotides ranged from 2 to 39 nucleotide deletion. There was no phenotypic difference between regular cells and knockout cells. However, myostatin protein was not apparently detected in the knockout cells by Western blotting. Additionally, six off-target sites were predicted and analyzed but any non-specific mutation in the off-target sites was not observed. Conclusion The knockout technical platform with the nickase and multiplex gRNAs can be efficiently and stablely applied to functional genomics study in poultry and finally adapted to generate the knockout poultry for agribio industry.http://www.ajas.info/upload/pdf/ajas-30-5-743.pdfGenome EditingCas9NickaseMyostatinKnockoutPoultry
collection DOAJ
language English
format Article
sources DOAJ
author Jeong Hyo Lee
Si Won Kim
Tae Sub Park
spellingShingle Jeong Hyo Lee
Si Won Kim
Tae Sub Park
Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
Asian-Australasian Journal of Animal Sciences
Genome Editing
Cas9
Nickase
Myostatin
Knockout
Poultry
author_facet Jeong Hyo Lee
Si Won Kim
Tae Sub Park
author_sort Jeong Hyo Lee
title Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
title_short Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
title_full Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
title_fullStr Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
title_full_unstemmed Myostatin gene knockout mediated by Cas9-D10A nickase in chicken DF1 cells without off-target effect
title_sort myostatin gene knockout mediated by cas9-d10a nickase in chicken df1 cells without off-target effect
publisher Asian-Australasian Association of Animal Production Societies
series Asian-Australasian Journal of Animal Sciences
issn 1011-2367
1976-5517
publishDate 2017-05-01
description Objective Based on rapid advancement of genetic modification techniques, genomic editing is expected to become the most efficient tool for improvement of economic traits in livestock as well as poultry. In this study, we examined and verified the nickase of mutated CRISPR-associated protein 9 (Cas9) to modulate the specific target gene in chicken DF1 cells. Methods Chicken myostatin which inhibits muscle cell growth and differentiation during myogenesis was targeted to be deleted and mutated by the Cas9-D10A nickase. After co-transfection of the nickase expression vector with green fluorescent gene (GFP) gene and targeted multiplex guide RNAs (gRNAs), the GFP-positive cells were sorted out by fluorescence-activated cell sorting procedure. Results Through the genotyping analysis of the knockout cells, the mutant induction efficiency was 100% in the targeted site. Number of the deleted nucleotides ranged from 2 to 39 nucleotide deletion. There was no phenotypic difference between regular cells and knockout cells. However, myostatin protein was not apparently detected in the knockout cells by Western blotting. Additionally, six off-target sites were predicted and analyzed but any non-specific mutation in the off-target sites was not observed. Conclusion The knockout technical platform with the nickase and multiplex gRNAs can be efficiently and stablely applied to functional genomics study in poultry and finally adapted to generate the knockout poultry for agribio industry.
topic Genome Editing
Cas9
Nickase
Myostatin
Knockout
Poultry
url http://www.ajas.info/upload/pdf/ajas-30-5-743.pdf
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AT taesubpark myostatingeneknockoutmediatedbycas9d10anickaseinchickendf1cellswithoutofftargeteffect
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