Coordination of WNT signaling and ciliogenesis during odontogenesis by piezo type mechanosensitive ion channel component 1

细胞生物学 压电1 纤毛形成 Wnt信号通路 纤毛 机械敏感通道 化学 运行x2 信号转导 生物 离子通道 基因表达 生物化学 受体 基因
作者
Aya Miyazaki,Asuna Sugimoto,Keigo Yoshizaki,Keita Kawarabayashi,Kokoro Iwata,Rika Kurogoushi,Takamasa Kitamura,Kunihiro Otsuka,Tomokazu Hasegawa,Yuki Akazawa,Satoshi Fukumoto,Naozumi Ishimaru,Tsutomu Iwamoto
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:9 (1) 被引量:60
标识
DOI:10.1038/s41598-019-51381-9
摘要

Abstract Signal transmission from the mechanical forces to the various intracellular activities is a fundamental process during tissue development. Despite their critical role, the mechanism of mechanical forces in the biological process is poorly understood. In this study, we demonstrated that in the response to hydrostatic pressure (HP), the piezo type mechanosensitive ion channel component 1 (PIEZO1) is a primary mechanosensing receptor for odontoblast differentiation through coordination of the WNT expression and ciliogenesis. In stem cells from human exfoliated deciduous teeth (SHED), HP significantly promoted calcium deposition as well as the expression of odontogenic marker genes, PANX3 and DSPP , and WNT related-genes including WNT5b and WNT16 , whereas HP inhibited cell proliferation and enhanced primary cilia expression. WNT signaling inhibitor XAV939 and primary cilia inhibitor chloral hydrate blocked the HP-induced calcium deposition. The PIEZO1 activator Yoda1 inhibited cell proliferation but induced ciliogenesis and WNT16 expression. Interestingly, HP and Yoda1 promoted nuclear translocation of RUNX2, whereas siRNA-mediated silencing of PIEZO1 decreased HP-induced nuclear translocation of RUNX2. Taken together, these results suggest that PIEZO1 functions as a mechanotransducer that connects HP signal to the intracellular signalings during odontoblast differentiation.
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