CRISPR-RfxCas13d screening uncovers Bckdk as a post-translational regulator of maternal-to-zygotic transition in teleosts

CRISPR-RfxCas13d筛选揭示Bckdk是硬骨鱼母源向合子转变的翻译后调控因子

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作者:Luis Hernández-Huertas ,Ismael Moreno-Sánchez ,Jesús Crespo-Cuadrado ,Ana Vargas-Baco ,Gabriel da Silva Pescador ,Ying Zhang ,Zhihui Wen ,Laurence Florens ,José M Santos-Pereira ,Ariel A Bazzini ,Miguel A Moreno-Mateos

Abstract

The maternal-to-zygotic transition (MZT) is a reprograming process encompassing zygotic genome activation (ZGA) and the clearance of maternally-provided mRNAs. While some factors regulating MZT have been identified, there are thousands of maternal RNAs whose function has not been ascribed yet. Here, we have performed a proof-of-principle CRISPR-RfxCas13d maternal screen, in which we targeted mRNAs encoding kinases and phosphatases or proteins regulating them in zebrafish. This screen identified branched-chain ketoacid dehydrogenase kinase, Bckdk, as a novel post-translational regulator of MZT. Bckdk mRNA knockdown caused epiboly defects, ZGA deregulation, H3K27ac reduction and a partial impairment of miR-430 processing. Phospho-proteomic analysis revealed that Phf10/Baf45a, a chromatin remodeling factor, is less phosphorylated upon Bckdk depletion. Further, phf10 mRNA knockdown also altered ZGA, and expression of a phospho-mimetic mutant of Phf10 rescued the developmental defects observed after bckdk mRNA depletion, as well as restored H3K27ac levels. Altogether, our results demonstrate the competence of CRISPR-RfxCas13d screenings to uncover new regulators of early vertebrate development and shed light on the post-translational control of MZT mediated by protein phosphorylation. Keywords: Bckdk; CRISPR-RfxCas13d; Kinases; MZT; Zebrafish.

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