The State Key Laboratory of Medicinal Chemical Biology, the 2011 Collaborative Innovation Center of Tianjin for Medical Epigenetics and College of Life Sciences, Nankai University, 94 Weijin Road, Tianjin 300071, China.
Dev Biol. 2013 Mar 1;375(1):13-22. doi: 10.1016/j.ydbio.2013.01.002. Epub 2013 Jan 9.
Phosphorylation of Ezrin T567 plays an important role in eight-cell embryo compaction. Yet, it is not clear how Ezrin phosphorylation is regulated during embryo compaction. Here, we demonstrated that inhibition of Mek/Erk or protein kinase C (PKC) signaling reduced the phosphorylation level of Ezrin T567 in eight-cell compacted embryos. Interestingly, the Rho GTPase inhibitor C3-transferase caused basolateral enrichment of atypical PKC (aPKC), as well as basolateral shift of phosphorylated Ezrin, suggesting aPKC may be a key regulator of Ezrin phosphorylation. Moreover, inhibition of PKC, but not Mek/Erk or Rho GTPases, affected the maintenance of Ezrin phosphorylation in compacted embryos. We further identified that aPKC is indeed required for Ezrin phosphorylation in eight-cell embryos. Taken together, Rho GTPases facilitate the apical distribution of aPKC and Ezrin. Subsequently, aPKC and Mek/Erk work together to promote Ezrin phosphorylation at the apical region, which in turn mediates the apical enrichment of filamentous actin, stabilizing the polarized apical region and allowing embryo compaction. Our data also suggested that aPKC might be the Ezrin kinase during eight-cell embryo compaction.
Ezrin T567 的磷酸化在八细胞胚胎致密化过程中起着重要作用。然而,Ezrin 磷酸化在胚胎致密化过程中是如何被调控的尚不清楚。在这里,我们证明了 Mek/Erk 或蛋白激酶 C(PKC)信号的抑制降低了八细胞致密胚胎中 Ezrin T567 的磷酸化水平。有趣的是,Rho GTPase 抑制剂 C3-转移酶导致非典型 PKC(aPKC)的基底外侧富集,以及磷酸化 Ezrin 的基底外侧移位,表明 aPKC 可能是 Ezrin 磷酸化的关键调节剂。此外,抑制 PKC,但不是 Mek/Erk 或 Rho GTPases,影响了致密胚胎中 Ezrin 磷酸化的维持。我们进一步确定 aPKC 确实是八细胞胚胎中 Ezrin 磷酸化所必需的。总之,Rho GTPases 促进了 aPKC 和 Ezrin 的顶端分布。随后,aPKC 和 Mek/Erk 共同作用,促进 Ezrin 在顶端区域的磷酸化,进而介导丝状肌动蛋白的顶端富集,稳定极化的顶端区域,并允许胚胎致密化。我们的数据还表明,aPKC 可能是八细胞胚胎致密化过程中的 Ezrin 激酶。