Department of Histology and Embryology, Harbin Medical University, Harbin, Heilongjiang, China.
Biol Reprod. 2021 Nov 15;105(5):1089-1103. doi: 10.1093/biolre/ioab141.
Two-cell-like (2C-like) embryonic stem cells (ESCs) are a small group of ESCs that spontaneously express zygotic genome activation (ZGA) genes and repeats, such as Zscan4 and murine endogenous retrovirus with leucine (MERVL), and are specifically expressed in 2-cell-stage mouse embryos. Although numerous types of treatment and agents elevate the transition of ESCs to 2C-like ESCs, Dux serves as a critical factor in this transition by increasing the expression of Zscan4 and MERVL directly. However, the loss of Dux did not impair the birth of mice, suggesting that Dux may not be the primary transitioning factor in fertilized embryos. It has been reported that for 2-cell embryos derived from somatic cell nuclear transfer (SCNT) and whose expression of ZGA genes and repeats was aberrant, Dux improved the reprogramming efficiency by correcting aberrant H3K9ac modification via its C-terminal domain. We confirmed that the overexpression of full-length Dux mRNA in SCNT embryos improved the efficiency of preimplantation development (62.16% vs. 41.26% with respect to controls) and also increased the expression of Zscan4 and MERVL. Furthermore, we found that the N-terminal double homeodomains of Dux were indispensable for Dux localization and function. The intermediate region was essential for MERVL and Zscan4 activation, and the C-terminal domain was important for elevating level of H3K27ac. Mutant Dux mRNA containing N-terminal double homeodomains with the intermediate region or the C-terminal domain also improved the preimplantation development of SCNT embryos. This is the first report focusing on distinguishing functional domains of Dux in embryos derived from SCNT.
两细胞样 (2C-like) 胚胎干细胞 (ESCs) 是一小群 ESCs,它们会自发表达合子基因组激活 (ZGA) 基因和重复序列,如 Zscan4 和鼠内源性逆转录病毒含亮氨酸 (MERVL),并在 2 细胞期的小鼠胚胎中特异性表达。虽然有许多类型的处理和试剂可以提高 ESCs 向 2C-like ESCs 的转化,但 Dux 通过直接增加 Zscan4 和 MERVL 的表达成为这种转化的关键因素。然而,Dux 的缺失并没有损害小鼠的出生,这表明 Dux 可能不是受精胚胎中主要的转化因子。据报道,对于来源于体细胞核移植 (SCNT) 的 2 细胞胚胎,其 ZGA 基因和重复序列的表达异常,Dux 通过其 C 端结构域改善异常的 H3K9ac 修饰,从而提高重编程效率。我们证实,全长 Dux mRNA 在 SCNT 胚胎中的过表达可提高植入前发育的效率(相对于对照分别为 62.16%和 41.26%),并增加 Zscan4 和 MERVL 的表达。此外,我们发现 Dux 的 N 端双同源结构域对于 Dux 的定位和功能是必不可少的。中间区域对于 MERVL 和 Zscan4 的激活是必需的,而 C 端结构域对于提高 H3K27ac 水平很重要。含有 N 端双同源结构域和中间区域或 C 端结构域的突变 Dux mRNA 也可改善 SCNT 胚胎的植入前发育。这是第一篇专注于区分 SCNT 来源胚胎中 Dux 功能域的报告。