Research Institute, National Cancer Center, Goyang, Gyeonggi, 10408, Republic of Korea.
Graduate School of Cancer Science and Policy, National Cancer Center, Goyang, Gyeonggi, 10408, Republic of Korea.
Exp Mol Med. 2019 Nov 14;51(11):1-12. doi: 10.1038/s12276-019-0342-z.
The Hippo pathway plays a crucial role in cell proliferation and apoptosis and can regulate stem cell maintenance and embryonic development. MOB kinase activators 1A and 1B (Mob1a/b) are key components of the Hippo pathway, whose homozygous deletion in mice causes early embryonic lethality at the preimplantation stage. To investigate the role of Mob1a/b in stem cell maintenance and differentiation, an embryonic stem cell (ESC) clone in which Mob1a/b could be conditionally depleted was generated and characterized. Although Mob1a/b depletion did not affect the stemness or proliferation of mouse ESCs, this depletion caused defects in differentiation into the three germ layers. Yap knockdown rescued the in vitro and in vivo defects in differentiation caused by Mob1a/b depletion, suggesting that differentiation defects caused by Mob1a/b depletion were Yap-dependent. In teratoma experiments, Yap knockdown in Mob1a/b-depleted ESCs partially restored defects in differentiation, indicating that hyperactivation of Taz, another effector of the Hippo pathway, inhibited differentiation into the three germ layers. Taken together, these results suggest that Mob1a/b or Hippo signaling plays a critical role in the differentiation of mouse ESCs into the three germ layers, which is dependent on Yap. These close relationship of the Hippo pathway with the differentiation of stem cells supports its potential as a therapeutic target in regenerative medicine.
Hippo 通路在细胞增殖和凋亡中发挥着关键作用,能够调节干细胞的维持和胚胎发育。MOB 激酶激活剂 1A 和 1B(Mob1a/b)是 Hippo 通路的关键组成部分,其在小鼠中的同源缺失导致着床前阶段的早期胚胎致死。为了研究 Mob1a/b 在干细胞维持和分化中的作用,生成并表征了一种可条件性耗尽 Mob1a/b 的胚胎干细胞(ESC)克隆。尽管 Mob1a/b 的耗竭并不影响小鼠 ESC 的干性或增殖,但它导致向三个胚层分化的缺陷。yap 的敲低挽救了 Mob1a/b 耗竭引起的体外和体内分化缺陷,表明 Mob1a/b 耗竭引起的分化缺陷依赖于 yap。在畸胎瘤实验中,Mob1a/b 耗竭的 ESC 中 Yap 的敲低部分恢复了分化缺陷,表明 Hippo 通路的另一个效应物 Taz 的过度激活抑制了三个胚层的分化。总之,这些结果表明 Mob1a/b 或 Hippo 信号在小鼠 ESC 向三个胚层的分化中起着关键作用,这依赖于 yap。Hippo 通路与干细胞分化的密切关系支持其作为再生医学中治疗靶点的潜力。