Alarcon Vernadeth B, Marikawa Yusuke
Department of Anatomy, Biochemistry and Physiology, Institute for Biogenesis Research, John A. Burns School of Medicine, University of Hawaii, 651 Ilalo St., BSB163, Honolulu, HI, 96813, USA.
Adv Anat Embryol Cell Biol. 2018;229:47-68. doi: 10.1007/978-3-319-63187-5_5.
In placental mammalian development, the first cell differentiation produces two distinct lineages that emerge according to their position within the embryo: the trophectoderm (TE, placenta precursor) differentiates in the surface, while the inner cell mass (ICM, fetal body precursor) forms inside. Here, we discuss how such position-dependent lineage specifications are regulated by the RHOA subfamily of small GTPases and RHO-associated coiled-coil kinases (ROCK). Recent studies in mouse show that activities of RHO/ROCK are required to promote TE differentiation and to concomitantly suppress ICM formation. RHO/ROCK operate through the HIPPO signaling pathway, whose cell position-specific modulation is central to establishing unique gene expression profiles that confer cell fate. In particular, activities of RHO/ROCK are essential in outside cells to promote nuclear localization of transcriptional co-activators YAP/TAZ, the downstream effectors of HIPPO signaling. Nuclear localization of YAP/TAZ depends on the formation of apicobasal polarity in outside cells, which requires activities of RHO/ROCK. We propose models of how RHO/ROCK regulate lineage specification and lay out challenges for future investigations to deepen our understanding of the roles of RHO/ROCK in preimplantation development. Finally, as RHO/ROCK may be inhibited by certain pharmacological agents, we discuss their potential impact on human preimplantation development in relation to fertility preservation in women.
在胎盘哺乳动物发育过程中,第一次细胞分化产生两个不同的谱系,它们根据在胚胎中的位置出现:滋养外胚层(TE,胎盘前体)在表面分化,而内细胞团(ICM,胎儿身体前体)在内部形成。在这里,我们讨论小GTP酶的RHOA亚家族和RHO相关卷曲螺旋激酶(ROCK)如何调节这种位置依赖性谱系特化。最近在小鼠中的研究表明,RHO/ROCK的活性对于促进TE分化和同时抑制ICM形成是必需的。RHO/ROCK通过HIPPO信号通路发挥作用,其细胞位置特异性调节对于建立赋予细胞命运的独特基因表达谱至关重要。特别是,RHO/ROCK的活性在外部细胞中对于促进转录共激活因子YAP/TAZ(HIPPO信号的下游效应器)的核定位至关重要。YAP/TAZ的核定位取决于外部细胞中顶基极性的形成,这需要RHO/ROCK的活性。我们提出了RHO/ROCK如何调节谱系特化的模型,并提出了未来研究的挑战,以加深我们对RHO/ROCK在植入前发育中的作用的理解。最后,由于RHO/ROCK可能被某些药物抑制,我们讨论了它们对人类植入前发育的潜在影响,以及与女性生育力保存的关系。