Enhanced Cas12a editing in mammalian cells and zebrafish

  • , Pengpeng Liu
  • Luk, Kevin
  • Shin, Masahiro
  • Idrizi, Feston
  • Kwok, Samantha F.
  • Roscoe, Benjamin P.
  • Mintzer, Esther
  • Suresh, Sneha
  • Morrison, Kyle
  • Frazao, Josias B.
  • Bolukbasi, Mehmet Fatih
  • Ponnienselvan, Karthikeyan
  • Luban, Jeremy
  • Zhu, Lihua Julie
  • Lawson, Nathan D.
  • Wolfe, Scot A.
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Publication date
May 2019
Publisher
eScholarship@UMassChan
Language
English

Abstract

Type V CRISPR-Cas12a systems provide an alternate nuclease platform to Cas9, with potential advantages for specific genome editing applications. Here we describe improvements to the Cas12a system that facilitate efficient targeted mutagenesis in mammalian cells and zebrafish embryos. We show that engineered variants of Cas12a with two different nuclear localization sequences (NLS) on the C terminus provide increased editing efficiency in mammalian cells. Additionally, we find that pre-crRNAs comprising a full-length direct repeat (full-DR-crRNA) sequence with specific stem-loop G-C base substitutions exhibit increased editing efficiencies compared with the standard mature crRNA framework. Finally, we demonstrate in zebrafish embryos that th...

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