Engineering and optimising deaminase fusions for genome editing

Precision genome engineering using homology donors and the endogenous DNA break repair machinery and recently CRISPR-Cas9 targeted APOBECs have been demonstrated. Here the authors design zinc-finger and TALE chimeric deaminases and investigate editing efficiency and off-target effects.

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Autores principales: Luhan Yang, Adrian W. Briggs, Wei Leong Chew, Prashant Mali, Marc Guell, John Aach, Daniel Bryan Goodman, David Cox, Yinan Kan, Emal Lesha, Venkataramanan Soundararajan, Feng Zhang, George Church
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/46f1a4a987da4603908d6583916fecd1
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spelling oai:doaj.org-article:46f1a4a987da4603908d6583916fecd12021-12-02T16:57:03ZEngineering and optimising deaminase fusions for genome editing10.1038/ncomms133302041-1723https://doaj.org/article/46f1a4a987da4603908d6583916fecd12016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13330https://doaj.org/toc/2041-1723Precision genome engineering using homology donors and the endogenous DNA break repair machinery and recently CRISPR-Cas9 targeted APOBECs have been demonstrated. Here the authors design zinc-finger and TALE chimeric deaminases and investigate editing efficiency and off-target effects.Luhan YangAdrian W. BriggsWei Leong ChewPrashant MaliMarc GuellJohn AachDaniel Bryan GoodmanDavid CoxYinan KanEmal LeshaVenkataramanan SoundararajanFeng ZhangGeorge ChurchNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Luhan Yang
Adrian W. Briggs
Wei Leong Chew
Prashant Mali
Marc Guell
John Aach
Daniel Bryan Goodman
David Cox
Yinan Kan
Emal Lesha
Venkataramanan Soundararajan
Feng Zhang
George Church
Engineering and optimising deaminase fusions for genome editing
description Precision genome engineering using homology donors and the endogenous DNA break repair machinery and recently CRISPR-Cas9 targeted APOBECs have been demonstrated. Here the authors design zinc-finger and TALE chimeric deaminases and investigate editing efficiency and off-target effects.
format article
author Luhan Yang
Adrian W. Briggs
Wei Leong Chew
Prashant Mali
Marc Guell
John Aach
Daniel Bryan Goodman
David Cox
Yinan Kan
Emal Lesha
Venkataramanan Soundararajan
Feng Zhang
George Church
author_facet Luhan Yang
Adrian W. Briggs
Wei Leong Chew
Prashant Mali
Marc Guell
John Aach
Daniel Bryan Goodman
David Cox
Yinan Kan
Emal Lesha
Venkataramanan Soundararajan
Feng Zhang
George Church
author_sort Luhan Yang
title Engineering and optimising deaminase fusions for genome editing
title_short Engineering and optimising deaminase fusions for genome editing
title_full Engineering and optimising deaminase fusions for genome editing
title_fullStr Engineering and optimising deaminase fusions for genome editing
title_full_unstemmed Engineering and optimising deaminase fusions for genome editing
title_sort engineering and optimising deaminase fusions for genome editing
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/46f1a4a987da4603908d6583916fecd1
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AT venkataramanansoundararajan engineeringandoptimisingdeaminasefusionsforgenomeediting
AT fengzhang engineeringandoptimisingdeaminasefusionsforgenomeediting
AT georgechurch engineeringandoptimisingdeaminasefusionsforgenomeediting
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