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CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos

The rapid development of CRISPR technology greatly impacts the field of genetic engineering. The simplicity in design and generation of highly efficient CRISPR reagents allows more and more researchers to take on genome editing in different model systems in their own labs, even for those who found i...

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Autores principales: Kouranova, Evguenia, Forbes, Kevin, Zhao, Guojun, Warren, Joe, Bartels, Angela, Wu, Yumei, Cui, Xiaoxia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4931306/
https://www.ncbi.nlm.nih.gov/pubmed/27094534
http://dx.doi.org/10.1089/hum.2016.009
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author Kouranova, Evguenia
Forbes, Kevin
Zhao, Guojun
Warren, Joe
Bartels, Angela
Wu, Yumei
Cui, Xiaoxia
author_facet Kouranova, Evguenia
Forbes, Kevin
Zhao, Guojun
Warren, Joe
Bartels, Angela
Wu, Yumei
Cui, Xiaoxia
author_sort Kouranova, Evguenia
collection PubMed
description The rapid development of CRISPR technology greatly impacts the field of genetic engineering. The simplicity in design and generation of highly efficient CRISPR reagents allows more and more researchers to take on genome editing in different model systems in their own labs, even for those who found it daunting before. An active CRISPR complex contains a protein component (Cas9) and an RNA component (small guide RNA [sgRNA]), which can be delivered into cells in various formats. Cas9 can be introduced as a DNA expression plasmid, in vitro transcripts, or as a recombinant protein bound to the RNA portion in a ribonucleoprotein particle (RNP), whereas the sgRNA can be delivered either expressed as a DNA plasmid or as an in vitro transcript. Here we compared the different delivery methods in cultured cell lines as well as mouse and rat single-cell embryos and view the RNPs as the most convenient and efficient to use. We also report the detection of limited off-targeting in cells and embryos and discuss approaches to lower that chance. We hope that researchers new to CRISPR find our results helpful to their adaptation of the technology for optimal gene editing.
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spelling pubmed-49313062016-07-25 CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos Kouranova, Evguenia Forbes, Kevin Zhao, Guojun Warren, Joe Bartels, Angela Wu, Yumei Cui, Xiaoxia Hum Gene Ther Research Articles The rapid development of CRISPR technology greatly impacts the field of genetic engineering. The simplicity in design and generation of highly efficient CRISPR reagents allows more and more researchers to take on genome editing in different model systems in their own labs, even for those who found it daunting before. An active CRISPR complex contains a protein component (Cas9) and an RNA component (small guide RNA [sgRNA]), which can be delivered into cells in various formats. Cas9 can be introduced as a DNA expression plasmid, in vitro transcripts, or as a recombinant protein bound to the RNA portion in a ribonucleoprotein particle (RNP), whereas the sgRNA can be delivered either expressed as a DNA plasmid or as an in vitro transcript. Here we compared the different delivery methods in cultured cell lines as well as mouse and rat single-cell embryos and view the RNPs as the most convenient and efficient to use. We also report the detection of limited off-targeting in cells and embryos and discuss approaches to lower that chance. We hope that researchers new to CRISPR find our results helpful to their adaptation of the technology for optimal gene editing. Mary Ann Liebert, Inc. 2016-06-01 2016-04-19 /pmc/articles/PMC4931306/ /pubmed/27094534 http://dx.doi.org/10.1089/hum.2016.009 Text en © Evguenia Kouranova, et al., 2016; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Research Articles
Kouranova, Evguenia
Forbes, Kevin
Zhao, Guojun
Warren, Joe
Bartels, Angela
Wu, Yumei
Cui, Xiaoxia
CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title_full CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title_fullStr CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title_full_unstemmed CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title_short CRISPRs for Optimal Targeting: Delivery of CRISPR Components as DNA, RNA, and Protein into Cultured Cells and Single-Cell Embryos
title_sort crisprs for optimal targeting: delivery of crispr components as dna, rna, and protein into cultured cells and single-cell embryos
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4931306/
https://www.ncbi.nlm.nih.gov/pubmed/27094534
http://dx.doi.org/10.1089/hum.2016.009
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