CRISPR-Cas13d induces efficient mRNA knock-down in animal embryos

Author:

Kushawah Gopal,Abugattas-Nuñez del Prado Joaquin,Martinez-Morales Juan R.,DeVore Michelle,Guelfo Javier R.,Brannan Emry O.,Wang Wei,Corbin Timothy J.,Moran Andrea M.,Alvarado Alejandro Sánchez,Málaga-Trillo Edward,Takacs Carter M.,Bazzini Ariel A.,Moreno-Mateos Miguel A.ORCID

Abstract

AbstractEarly embryonic development is driven exclusively by maternal gene products deposited into the oocyte. Although critical in establishing early developmental programs, maternal gene functions have remained elusive due to a paucity of techniques for their systematic disruption and assessment. CRISPR-Cas13 systems have recently been employed to induce RNA degradation in yeast, plants and mammalian cell lines. However, no systematic study of the potential of Cas13 has been carried out in an animal system. Here, we show that CRISPR-Cas13d is an effective and precise system to deplete specific mRNA transcripts in zebrafish embryos. We demonstrate that both zygotically-expressed and maternally-provided transcripts are efficiently targeted, resulting in an 80% average decrease in transcript level and the recapitulation of well-known embryonic phenotypes. Moreover, we show that this system can be used in medaka, killifish and mouse embryos. Altogether our results demonstrate that CRISPR-Cas13d is an efficient knock-down platform to interrogate gene function in animal embryos.

Publisher

Cold Spring Harbor Laboratory

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