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CRISPR-RfxCas13d筛选揭示Bckdk是硬骨鱼母源-合子转换的翻译后调节因子。

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

作者信息

Hernandez-Huertas Luis, Moreno-Sanchez Ismael, Crespo-Cuadrado Jesús, Vargas-Baco Ana, da Silva Pescador Gabriel, Santos-Pereira José M, Bazzini Ariel A, Moreno-Mateos Miguel A

机构信息

Andalusian Center for Developmental Biology (CABD), Pablo de Olavide University/CSIC/Junta de Andalucía, Ctra. Utrera Km.1, 41013, Seville, Spain.

Department of Molecular Biology and Biochemical Engineering, Pablo de Olavide University, Ctra. Utrera Km.1, 41013, Seville, Spain.

出版信息

bioRxiv. 2024 May 23:2024.05.22.595167. doi: 10.1101/2024.05.22.595167.

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 screening targeting mRNAs encoding protein kinases and phosphatases in zebrafish and identified Bckdk as a novel post-translational regulator of MZT. 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, mRNA knockdown also altered ZGA and Phf10 constitutively phosphorylated rescued the developmental defects observed after mRNA depletion. 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.

摘要

母源向合子转变(MZT)是一个重编程过程,包括合子基因组激活(ZGA)和清除母源提供的mRNA。虽然已经鉴定出一些调节MZT的因子,但仍有成千上万的母源RNA其功能尚未明确。在这里,我们进行了一项原理验证性的CRISPR-RfxCas13d母源筛选,靶向斑马鱼中编码蛋白激酶和磷酸酶的mRNA,并鉴定出Bckdk是MZT的一种新型翻译后调节因子。mRNA敲低导致外包缺陷、ZGA失调、H3K27ac减少以及miR-430加工的部分受损。磷酸化蛋白质组分析表明,染色质重塑因子Phf10/Baf45a在Bckdk缺失时磷酸化程度降低。此外,mRNA敲低还改变了ZGA,而持续磷酸化的Phf10挽救了mRNA缺失后观察到的发育缺陷。总之,我们的结果证明了CRISPR-RfxCas13d筛选能够揭示早期脊椎动物发育的新调节因子,并阐明由蛋白质磷酸化介导的MZT的翻译后调控机制。

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