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One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)

Novel applications based on the bacterial CRISPR system make genetic, genomic, transcriptional and epigenomic engineering widely accessible for the first time. A significant advantage of CRISPR over previous methods is its tremendous adaptability due to its bipartite nature. Cas9 or its engineered v...

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Autores principales: Breunig, Christopher T., Durovic, Tamara, Neuner, Andrea M., Baumann, Valentin, Wiesbeck, Maximilian F., Köferle, Anna, Götz, Magdalena, Ninkovic, Jovica, Stricker, Stefan H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5922533/
https://www.ncbi.nlm.nih.gov/pubmed/29702666
http://dx.doi.org/10.1371/journal.pone.0196015
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author Breunig, Christopher T.
Durovic, Tamara
Neuner, Andrea M.
Baumann, Valentin
Wiesbeck, Maximilian F.
Köferle, Anna
Götz, Magdalena
Ninkovic, Jovica
Stricker, Stefan H.
author_facet Breunig, Christopher T.
Durovic, Tamara
Neuner, Andrea M.
Baumann, Valentin
Wiesbeck, Maximilian F.
Köferle, Anna
Götz, Magdalena
Ninkovic, Jovica
Stricker, Stefan H.
author_sort Breunig, Christopher T.
collection PubMed
description Novel applications based on the bacterial CRISPR system make genetic, genomic, transcriptional and epigenomic engineering widely accessible for the first time. A significant advantage of CRISPR over previous methods is its tremendous adaptability due to its bipartite nature. Cas9 or its engineered variants define the molecular effect, while short gRNAs determine the targeting sites. A majority of CRISPR approaches depend on the simultaneous delivery of multiple gRNAs into single cells, either as an essential precondition, to increase responsive cell populations or to enhance phenotypic outcomes. Despite these requirements, methods allowing the efficient generation and delivery of multiple gRNA expression units into single cells are still sparse. Here we present STAgR (String assembly gRNA cloning), a single step gRNA multiplexing system, that obtains its advantages by employing the N20 targeting sequences as necessary homologies for Gibson assembly. We show that STAgR allows reliable and cost-effective generation of vectors with high numbers of gRNAs enabling multiplexed CRISPR approaches. Moreover, STAgR is easily customizable, as vector backbones as well as gRNA structures, numbers and promoters can be freely chosen and combined. Finally, we demonstrate STAgR’s widespread functionality, its efficiency in multi-targeting approaches, using it for both, genome and transcriptome editing, as well as applying it in vitro and in vivo.
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spelling pubmed-59225332018-05-11 One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR) Breunig, Christopher T. Durovic, Tamara Neuner, Andrea M. Baumann, Valentin Wiesbeck, Maximilian F. Köferle, Anna Götz, Magdalena Ninkovic, Jovica Stricker, Stefan H. PLoS One Research Article Novel applications based on the bacterial CRISPR system make genetic, genomic, transcriptional and epigenomic engineering widely accessible for the first time. A significant advantage of CRISPR over previous methods is its tremendous adaptability due to its bipartite nature. Cas9 or its engineered variants define the molecular effect, while short gRNAs determine the targeting sites. A majority of CRISPR approaches depend on the simultaneous delivery of multiple gRNAs into single cells, either as an essential precondition, to increase responsive cell populations or to enhance phenotypic outcomes. Despite these requirements, methods allowing the efficient generation and delivery of multiple gRNA expression units into single cells are still sparse. Here we present STAgR (String assembly gRNA cloning), a single step gRNA multiplexing system, that obtains its advantages by employing the N20 targeting sequences as necessary homologies for Gibson assembly. We show that STAgR allows reliable and cost-effective generation of vectors with high numbers of gRNAs enabling multiplexed CRISPR approaches. Moreover, STAgR is easily customizable, as vector backbones as well as gRNA structures, numbers and promoters can be freely chosen and combined. Finally, we demonstrate STAgR’s widespread functionality, its efficiency in multi-targeting approaches, using it for both, genome and transcriptome editing, as well as applying it in vitro and in vivo. Public Library of Science 2018-04-27 /pmc/articles/PMC5922533/ /pubmed/29702666 http://dx.doi.org/10.1371/journal.pone.0196015 Text en © 2018 Breunig et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Breunig, Christopher T.
Durovic, Tamara
Neuner, Andrea M.
Baumann, Valentin
Wiesbeck, Maximilian F.
Köferle, Anna
Götz, Magdalena
Ninkovic, Jovica
Stricker, Stefan H.
One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title_full One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title_fullStr One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title_full_unstemmed One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title_short One step generation of customizable gRNA vectors for multiplex CRISPR approaches through string assembly gRNA cloning (STAgR)
title_sort one step generation of customizable grna vectors for multiplex crispr approaches through string assembly grna cloning (stagr)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5922533/
https://www.ncbi.nlm.nih.gov/pubmed/29702666
http://dx.doi.org/10.1371/journal.pone.0196015
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