Center for Genetic Analysis of Behavior, National Institute for Physiological Sciences, Okazaki, Aichi, Japan.
The Graduate University of Advanced Studies, Okazaki, Aichi, Japan.
Nat Commun. 2021 Feb 26;12(1):1328. doi: 10.1038/s41467-021-21557-x.
Murine animal models from genetically modified pluripotent stem cells (PSCs) are essential for functional genomics and biomedical research, which require germline transmission for the establishment of colonies. However, the quality of PSCs, and donor-host cell competition in chimeras often present strong barriers for germline transmission. Here, we report efficient germline transmission of recalcitrant PSCs via blastocyst complementation, a method to compensate for missing tissues or organs in genetically modified animals via blastocyst injection of PSCs. We show that blastocysts from germline-deficient Prdm14 knockout rats provide a niche for the development of gametes originating entirely from the donor PSCs without any detriment to somatic development. We demonstrate the potential of this approach by creating PSC-derived Pax2/Pax8 double mutant anephric rats, and rescuing germline transmission of a PSC carrying a mouse artificial chromosome. Furthermore, we generate mouse PSC-derived functional spermatids in rats, which provides a proof-of-principle for the generation of xenogenic gametes in vivo. We believe this approach will become a useful system for generating PSC-derived germ cells in the future.
利用基因修饰多能干细胞(PSCs)制备的鼠类动物模型,对于功能基因组学和生物医学研究至关重要,这需要通过种系传递来建立品系。然而,PSCs 的质量以及嵌合体中供体细胞与宿主细胞的竞争,常常成为种系传递的强大障碍。在这里,我们通过囊胚互补报告了一种高效的种系传递方法,该方法可通过向基因修饰动物的囊胚中注射 PSCs,补偿缺失的组织或器官。我们发现,源自完全来源于供体 PSCs 的配子,能够在生殖系缺失的 Prdm14 敲除大鼠的囊胚中发育,而不会对体细胞发育造成任何损害。我们通过创建 PSC 衍生的 Pax2/Pax8 双突变无肾大鼠,以及挽救携带小鼠人工染色体的 PSC 的种系传递,证明了这种方法的潜力。此外,我们还在大鼠中生成了源自小鼠 PSC 的功能性精子,这为体内生成异种配子提供了一个原理性验证。我们相信,这种方法在未来将成为生成 PSC 衍生生殖细胞的有用系统。