The Hospital for Sick Children, Program in Developmental and Stem Cell Biology, Toronto, ON M5G 1X8, Canada.
Development. 2014 Mar;141(6):1197-208. doi: 10.1242/dev.101915. Epub 2014 Feb 12.
During adult homeostasis and regeneration, the freshwater planarian must accomplish a constant balance between cell proliferation and cell death, while also maintaining proper tissue and organ size and patterning. How these ordered processes are precisely modulated remains relatively unknown. Here we show that planarians use the downstream effector of the Hippo signaling cascade, yorkie (yki; YAP in vertebrates) to control a diverse set of pleiotropic processes in organ homeostasis, stem cell regulation, regeneration and axial patterning. We show that yki functions to maintain the homeostasis of the planarian excretory (protonephridial) system and to limit stem cell proliferation, but does not affect the differentiation process or cell death. Finally, we show that Yki acts synergistically with WNT/β-catenin signaling to repress head determination by limiting the expression domains of posterior WNT genes and that of the WNT-inhibitor notum. Together, our data show that yki is a key gene in planarians that integrates stem cell proliferation control, organ homeostasis, and the spatial patterning of tissues.
在成年体内平衡和再生过程中,淡水涡虫必须在细胞增殖和细胞死亡之间保持持续的平衡,同时还要维持适当的组织和器官大小和模式。这些有序过程是如何被精确调节的仍然知之甚少。在这里,我们表明,涡虫利用 Hippo 信号级联的下游效应物 yorkie(yki;脊椎动物中的 YAP)来控制器官内稳态、干细胞调节、再生和轴向模式形成中的一系列多效性过程。我们表明,yki 发挥作用以维持涡虫排泄(原肾)系统的内稳态并限制干细胞增殖,但不影响分化过程或细胞死亡。最后,我们表明 Yki 与 WNT/β-catenin 信号协同作用,通过限制后 WNT 基因和 WNT 抑制剂 notum 的表达域来抑制头部决定,从而抑制头部决定。总之,我们的数据表明,yki 是一种关键基因,它整合了干细胞增殖控制、器官内稳态和组织的空间模式形成。