Ahtiainen Laura, Uski Isa, Thesleff Irma, Mikkola Marja L
Developmental Biology Program, Institute of Biotechnology, University of Helsinki, 00014 Helsinki, Finland
Developmental Biology Program, Institute of Biotechnology, University of Helsinki, 00014 Helsinki, Finland.
J Cell Biol. 2016 Sep 12;214(6):753-67. doi: 10.1083/jcb.201512074.
During organogenesis, cell fate specification and patterning are regulated by signaling centers, specialized clusters of morphogen-expressing cells. In many organs, initiation of development is marked by bud formation, but the cellular mechanisms involved are ill defined. Here, we use the mouse incisor tooth as a model to study budding morphogenesis. We show that a group of nonproliferative epithelial cells emerges in the early tooth primordium and identify these cells as a signaling center. Confocal live imaging of tissue explants revealed that although these cells reorganize dynamically, they do not reenter the cell cycle or contribute to the growing tooth bud. Instead, budding is driven by proliferation of the neighboring cells. We demonstrate that the activity of the ectodysplasin/Edar/nuclear factor κB pathway is restricted to the signaling center, and its inactivation leads to fewer quiescent cells and a smaller bud. These data functionally link the signaling center size to organ size and imply that the early signaling center is a prerequisite for budding morphogenesis.
在器官发生过程中,细胞命运特化和模式形成由信号中心调控,信号中心是表达形态发生素的细胞的特殊集群。在许多器官中,发育的起始以芽的形成为标志,但其中涉及的细胞机制尚不清楚。在这里,我们以小鼠切牙为模型研究芽生形态发生。我们发现一群非增殖性上皮细胞出现在早期牙胚中,并将这些细胞鉴定为一个信号中心。组织外植体的共聚焦实时成像显示,尽管这些细胞动态重组,但它们不会重新进入细胞周期或对生长中的牙芽有贡献。相反,芽生是由邻近细胞的增殖驱动的。我们证明外胚层发育不良蛋白/Edar/核因子κB信号通路的活性局限于信号中心,其失活导致静止细胞减少和芽变小。这些数据在功能上将信号中心大小与器官大小联系起来,并表明早期信号中心是芽生形态发生的先决条件。