TY - JOUR
T1 - Atypical PKC, Regulated by Rho GTPases and Mek/Erk, Phosphorylates Ezrin during eight-cell embryocompaction
AU - Liu, Hongjie
AU - Wu, Zhaoting
AU - Shi, Xianle
AU - Li, Wenzhi
AU - Liu, Chang
AU - Wang, Dekun
AU - Ye, Xiaoying
AU - Liu, Lin
AU - Na, Jie
AU - Cheng, Hong
AU - Chen, Lingyi
PY - 2013/3/1
Y1 - 2013/3/1
N2 - 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.
AB - 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.
KW - Embryo compaction
KW - Ezrin phosphorylation
KW - Mek/Erk
KW - PKC
KW - Rho GTPase
UR - http://www.scopus.com/inward/record.url?scp=84873527141&partnerID=8YFLogxK
U2 - 10.1016/j.ydbio.2013.01.002
DO - 10.1016/j.ydbio.2013.01.002
M3 - Article
C2 - 23313818
AN - SCOPUS:84873527141
SN - 0012-1606
VL - 375
SP - 13
EP - 22
JO - Developmental Biology
JF - Developmental Biology
IS - 1
ER -