Yang Jian, Cook Lauryn, Chen Zhiyuan
Reproductive Sciences Center, Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, 45229, Ohio, USA.
Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, 45229, Ohio, USA.
bioRxiv. 2023 Sep 20:2023.09.19.558531. doi: 10.1101/2023.09.19.558531.
In mammals, many retrotransposons are de-repressed during zygotic genome activation (ZGA). However, their functions in early development remain elusive largely due to the challenge to simultaneously manipulate thousands of retrotransposon insertions in embryos. Here, we employed epigenome editing to perturb the long terminal repeat (LTR) MT2_Mm, a well-known ZGA and totipotency marker that exists in 2667 insertions throughout the mouse genome. CRISPRi robustly repressed 2485 (93%) MT2_Mm insertions and 1090 (~55%) insertions of the closely related MT2C_Mm in 2-cell embryos. Remarkably, such perturbation caused down-regulation of hundreds of ZGA genes at the 2-cell stage and embryonic arrest mostly at the morula stage. Mechanistically, MT2_Mm/MT2C_Mm primarily served as alternative ZGA promoters activated by OBOX proteins. Thus, through unprecedented large-scale epigenome editing, we addressed to what extent MT2_Mm/MT2C_Mm regulates ZGA and preimplantation development. Our approach could be adapted to systematically perturb retrotransposons in other mammalian embryos as it doesn't require transgenic animals.
在哺乳动物中,许多逆转录转座子在合子基因组激活(ZGA)过程中被去抑制。然而,它们在早期发育中的功能仍然难以捉摸,这主要是由于在胚胎中同时操纵数千个逆转录转座子插入存在挑战。在这里,我们采用表观基因组编辑来干扰长末端重复序列(LTR)MT2_Mm,它是一种著名的ZGA和全能性标记,在整个小鼠基因组中约有2667个插入位点。CRISPRi在2细胞胚胎中强烈抑制了2485个(约93%)MT2_Mm插入位点以及1090个(约55%)密切相关的MT2C_Mm插入位点。值得注意的是,这种干扰导致2细胞阶段数百个ZGA基因下调,胚胎大多在桑椹胚阶段停滞发育。从机制上讲,MT2_Mm/MT2C_Mm主要作为由OBOX蛋白激活的替代ZGA启动子。因此,通过前所未有的大规模表观基因组编辑,我们研究了MT2_Mm/MT2C_Mm在多大程度上调节ZGA和植入前发育。我们的方法可以适用于系统地干扰其他哺乳动物胚胎中的逆转录转座子,因为它不需要转基因动物。