Hei-tag: a highly efficient tag to boost targeted genome editing

Precise, targeted genome editing by CRISPR/Cas9 is key for basic research and translational approaches in model and non-model systems1. While active in all species tested so far, editing efficiencies still leave room for improvement. To reach its target, the bacterial Cas9 needs to be efficiently sh...

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Hauptverfasser: Thumberger, Thomas (VerfasserIn) , Tavhelidse-Suck, Tinatini (VerfasserIn) , Gutiérrez Triana, José Arturo (VerfasserIn) , Medert, Rebekka (VerfasserIn) , Cornean, Alex (VerfasserIn) , Welz, Bettina (VerfasserIn) , Freichel, Marc (VerfasserIn) , Wittbrodt, Joachim (VerfasserIn)
Dokumenttyp: Article (Journal) Kapitel/Artikel
Sprache:Englisch
Veröffentlicht: June 10, 2021
In: bioRxiv beta
Year: 2021, Pages: 1-19
DOI:10.1101/2021.05.27.445956
Online-Zugang:Verlag, kostenfrei, Volltext: https://doi.org/10.1101/2021.05.27.445956
Verlag, kostenfrei, Volltext: https://www.biorxiv.org/content/10.1101/2021.05.27.445956v2
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Verfasserangaben:Thomas Thumberger, Tinatini Tavhelidse, Jose Arturo Gutierrez-Triana, Rebekka Medert, Alex Cornean, Bettina Welz, Marc Freichel, and Joachim Wittbrodt

MARC

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520 |a Precise, targeted genome editing by CRISPR/Cas9 is key for basic research and translational approaches in model and non-model systems1. While active in all species tested so far, editing efficiencies still leave room for improvement. To reach its target, the bacterial Cas9 needs to be efficiently shuttled into the nucleus as attempted by fusion of nuclear localization signals (NLSs) to the Cas9 protein2. Additional domains such as FLAG- or myc-tags are added for immediate detection or straight-forward purification3. To avoid steric hinderance impacting on activity, amino acid linkers are employed connecting Cas9 and additional domains. - We present the ‘hei-tag (high efficiency-tag)’, boosting the activity of the wide variety of CRISPR/Cas genome editing tools. The addition of the hei-tag to Cas9 or a C-to-T base editor dramatically enhances the respective targeting efficiency in model systems ranging from fish to mammals, including tissue culture applications. This allows to instantly upgrade existing and potentially highly adapted systems as well as establish novel highly efficient tools. 
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