Oxygen Regulates Epithelial Stem Cell Proliferation Via Rhoa-Actomyosin-Yap/Taz Signal In Mouse Incisor

DEVELOPMENT(2021)

引用 10|浏览9
暂无评分
摘要
Stem cells are maintained in specific niches that strictly regulate their proliferation and differentiation for proper tissue regeneration and renewal. Molecular oxygen (O-2) is an important component of the niche microenvironment, but little is known about how O-2 governs epithelial stem cell (ESC) behavior. Here, we demonstrate that O-2 plays a crucial role in regulating the proliferation of ESCs using the continuously growing mouse incisors. We have revealed that slow-cycling cells in the niche are maintained under relatively hypoxic conditions compared with actively proliferating cells, based on the blood vessel distribution and metabolic status. Mechanistically, we have demonstrated that, during hypoxia, HIF1 alpha upregulation activates the RhoA signal, thereby promoting cortical actomyosin and stabilizing the adherens junction complex, including merlin. This leads to the cytoplasmic retention of YAP/TAZ to attenuate cell proliferation. These results shed light on the biological significance of blood-vessel geometry and the signaling mechanism through microenvironmental O-2 to orchestrate ESC behavior, providing a novel molecular basis for the microenvironmental O-2-mediated stem cell regulation during tissue development and renewal.
更多
查看译文
关键词
Epithelial stem cells, Oxygen, RhoA, YAP/TAZ, Actomyosin, Rodent incisor
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要