芳香烃受体
胶质发生
神经发生
斑马鱼
内生
细胞生物学
少突胶质细胞
化学
神经干细胞
神经发育
髓鞘碱性蛋白
信号转导
细胞分化
髓鞘
生物
转录因子
生物化学
神经科学
中枢神经系统
干细胞
基因
作者
Pei‐Yi Wu,Pei-Yun Chuang,Geen-Dong Chang,Ya-Yun Chan,Tzu-Ching Tsai,Bo-Jeng Wang,Kuan‐Hung Lin,Wen‐Ming Hsu,Yung-Feng Liao,Hsinyu Lee
标识
DOI:10.1021/acschemneuro.9b00273
摘要
Aryl hydrocarbon receptor (AHR) signaling has been suggested to play roles in various physiological functions independent of its xenobiotic activity, including cell cycle regulation, immune response, and embryonic development. Several endogenous ligands were also identified by high-throughput screening techniques. However, the mechanism by which these molecules mediate AHR signaling in certain functions is still elusive. In this study, we investigated the possible pathway through which AHR and its endogenous ligands regulate neural development. We first identified two neuroactive steroids, 3α,5α-tetrahydrocorticosterone and 3α,5β-tetrahydrocorticosterone (5α- and 5β-THB), as novel AHR endogenous ligands through the use of an ultrasensitive dioxin-like compound bioassay and liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS). We then treated zebrafish embryos with 5α- and 5β-THB, which enhance the expression of neurogenesis marker HuC. Furthermore, 5α- and 5β-THB both enhanced the expression of myelinating glial cell markers, sex determining region Y-box 10 (Sox10), and myelin-associated proteins myelin basic protein (Mbp) and improved the mobility of zebrafish larvae via the Ahr2 pathway. These results indicated that AHR mediates zebrafish neurogenesis and gliogenesis, especially the differentiation of oligodendrocyte or Schwann cells. Additionally, we showed that these molecules may induce neuroblastoma (NB) cell differentiation suggesting therapeutic potential of 5α- and 5β-THB in NB treatment. In summary, our results reveal that 5α- and 5β-THB are endogenous ligands of AHR and have therapeutic potential for NB treatment. By the interaction with THB, AHR signaling regulates various aspects of neural development.
科研通智能强力驱动
Strongly Powered by AbleSci AI