Wu Yifan, Aegerter Pauline, Nipper Michael, Ramjit Logan, Liu Jun, Wang Pei
Department of Cell Systems and Anatomy, The University of Texas Health San Antonio, San Antonio, TX, United States.
Department of Obstetrics, The Second Xiangya Hospital, Central South University, Changsha, China.
Front Cell Dev Biol. 2021 May 17;9:663906. doi: 10.3389/fcell.2021.663906. eCollection 2021.
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.
河马信号通路是胰腺发育和稳态的重要调节因子,指导细胞命运决定、形态发生和成年胰腺细胞可塑性。通过功能丧失研究发现,河马信号在维持胰腺器官发生过程中祖细胞更新、增殖和分化之间的适当平衡方面发挥关键作用。其他研究表明,该信号通路的下游效应器YAP的过度激活通过抑制Ngn3促进导管细胞发育并抑制内分泌细胞命运特化。出生后,已发现河马信号的破坏会导致腺泡细胞去分化和胰腺炎样表型。此外,河马信号通过确保适当的细胞极化和分支来指导胰腺形态发生。尽管有这些发现,但河马调控细胞分化和胰腺结构的机制尚未完全了解。在这里,我们综述了河马信号在胰腺发育中的功能的最新研究,包括其与NOTCH、WNT/β-连环蛋白和PI3K/Akt/mTOR信号通路的相互作用。