RNA targeting with CRISPR-Cas13

利用 CRISPR-Cas13 进行 RNA 靶向

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作者:Omar O Abudayyeh ,Jonathan S Gootenberg ,Patrick Essletzbichler ,Shuo Han ,Julia Joung ,Joseph J Belanto ,Vanessa Verdine ,David B T Cox ,Max J Kellner ,Aviv Regev ,Eric S Lander ,Daniel F Voytas ,Alice Y Ting ,Feng Zhang

Abstract

RNA has important and diverse roles in biology, but molecular tools to manipulate and measure it are limited. For example, RNA interference can efficiently knockdown RNAs, but it is prone to off-target effects, and visualizing RNAs typically relies on the introduction of exogenous tags. Here we demonstrate that the class 2 type VI RNA-guided RNA-targeting CRISPR-Cas effector Cas13a (previously known as C2c2) can be engineered for mammalian cell RNA knockdown and binding. After initial screening of 15 orthologues, we identified Cas13a from Leptotrichia wadei (LwaCas13a) as the most effective in an interference assay in Escherichia coli. LwaCas13a can be heterologously expressed in mammalian and plant cells for targeted knockdown of either reporter or endogenous transcripts with comparable levels of knockdown as RNA interference and improved specificity. Catalytically inactive LwaCas13a maintains targeted RNA binding activity, which we leveraged for programmable tracking of transcripts in live cells. Our results establish CRISPR-Cas13a as a flexible platform for studying RNA in mammalian cells and therapeutic development.

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