Cell fate determination and Hippo signaling pathway in preimplantation mouse embryo

Author(s):  
Ecem Yildirim ◽  
Gizem Bora ◽  
Tugce Onel ◽  
Nilsu Talas ◽  
Aylin Yaba
2020 ◽  
Vol 26 (9) ◽  
pp. 653-664
Author(s):  
Challis Karasek ◽  
Mohamed Ashry ◽  
Chad S Driscoll ◽  
Jason G Knott

Abstract In mammals, the first cell-fate decision occurs during preimplantation embryo development when the inner cell mass (ICM) and trophectoderm (TE) lineages are established. The ICM develops into the embryo proper, while the TE lineage forms the placenta. The underlying molecular mechanisms that govern lineage formation involve cell-to-cell interactions, cell polarization, cell signaling and transcriptional regulation. In this review, we will discuss the current understanding regarding the cellular and molecular events that regulate lineage formation in mouse preimplantation embryos with an emphasis on cell polarity and the Hippo signaling pathway. Moreover, we will provide an overview on some of the molecular tools that are used to manipulate the Hippo pathway and study cell-fate decisions in early embryos. Lastly, we will provide exciting future perspectives on transcriptional regulatory mechanisms that modulate the activity of the Hippo pathway in preimplantation embryos to ensure robust lineage segregation.


PLoS ONE ◽  
2014 ◽  
Vol 9 (7) ◽  
pp. e101989 ◽  
Author(s):  
Jae Ho Lee ◽  
Sung Sook Choi ◽  
Hae Won Kim ◽  
Wen Cheng Xiong ◽  
Churl K. Min ◽  
...  

2017 ◽  
Vol 01 (04) ◽  
pp. 179-199
Author(s):  
Tomoo Tanaka ◽  
Takayoshi Suzuki ◽  
Jun Nakamura ◽  
Yoshiaki Kawamura ◽  
Sotaro Sadahiro ◽  
...  

Author(s):  
Yifan Wu ◽  
Pauline Aegerter ◽  
Michael Nipper ◽  
Logan Ramjit ◽  
Jun Liu ◽  
...  

The Hippo signaling pathway is a vital regulator of pancreatic development and homeostasis, directing cell fate decisions, morphogenesis, and adult pancreatic cellular plasticity. Through loss-of-function research, Hippo signaling has been found to play key roles in maintaining the proper balance between progenitor cell renewal, proliferation, and differentiation in pancreatic organogenesis. Other studies suggest that overactivation of YAP, a downstream effector of the pathway, promotes ductal cell development and suppresses endocrine cell fate specification via repression of Ngn3. After birth, disruptions in Hippo signaling have been found to lead to de-differentiation of acinar cells and pancreatitis-like phenotype. Further, Hippo signaling directs pancreatic morphogenesis by ensuring proper cell polarization and branching. Despite these findings, the mechanisms through which Hippo governs cell differentiation and pancreatic architecture are yet to be fully understood. Here, we review recent studies of Hippo functions in pancreatic development, including its crosstalk with NOTCH, WNT/β-catenin, and PI3K/Akt/mTOR signaling pathways.


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