Institute of Animal Husbandry, Heilongjiang Academy of Agricultural Sciences, Harbin 150086, China.
Key Laboratory of Combining Farming and Animal Husbandry, Ministry of Agriculture and Rural Affairs, Harbin 150086, China.
Biomolecules. 2022 Nov 1;12(11):1611. doi: 10.3390/biom12111611.
After fertilization, the zygote genome undergoes dramatic structural reorganization to ensure the establishment of totipotency, and then the totipotent potential of the zygote or 2-cell-stage embryo progressively declines. However, cellular potency is not always a one-way street. Specifically, a small number of embryonic stem cells (ESCs) occasionally overcome epigenetic barriers and transiently convert to a totipotent status. Despite the significant potential of the somatic cell nuclear transfer (SCNT) technique, the establishment of totipotency is often deficient in cloned embryos. Because of this phenomenon, the question arises as to whether strategies attempting to induce 2-cell-like cells (2CLCs) can provide practical applications, such as reprogramming of somatic cell nuclei. Inspired by strategies that convert ESCs into 2CLCs, we hypothesized that there will be a similar pathway by which cloned embryos can establish totipotent status after SCNT. In this review, we provide a snapshot of the practical strategies utilized to induce 2CLCs during investigations of the development of cloned embryos. The 2CLCs have similar transcriptome and chromatin features to that of 2-cell-stage embryos, and we propose that 2CLCs, already a valuable in vitro model for dissecting totipotency, will provide new opportunities to improve SCNT efficiency.
受精后,受精卵基因组经历剧烈的结构重排,以确保全能性的建立,然后受精卵或 2 细胞期胚胎的全能性潜力逐渐下降。然而,细胞潜能并不总是一条单行道。具体来说,少数胚胎干细胞(ESCs)偶尔会克服表观遗传障碍,短暂地转化为全能状态。尽管体细胞核移植(SCNT)技术具有巨大的潜力,但全能性的建立在克隆胚胎中往往是不足的。由于这种现象,人们提出了这样一个问题,即是否有试图诱导 2 细胞样细胞(2CLC)的策略可以提供实际应用,例如体细胞核的重编程。受将 ESCs 转化为 2CLC 的策略的启发,我们假设在研究克隆胚胎的发育过程中,通过 SCNT 建立全能性状态也存在类似的途径。在这篇综述中,我们提供了一个快照,介绍了在研究克隆胚胎发育过程中诱导 2CLC 的实用策略。2CLC 具有与 2 细胞期胚胎相似的转录组和染色质特征,我们提出 2CLC 已经是一个用于剖析全能性的有价值的体外模型,将为提高 SCNT 效率提供新的机会。