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Erinacine C Activates Transcription from a Consensus ETS DNA Binding Site in Astrocytic Cells in Addition to NGF Induction

机译:Erinacine C除了NGF诱导外Erinacine C还从星形胶质细胞中的共有型ETS DNA结合位点激活转录

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摘要

Medicinal mushrooms of the genus Hericium are known to produce secondary metabolites with homeostatic properties for the central nervous system. We and others have recently demonstrated that among these metabolites cyathane diterpenoids and in particular erinacine C possess potent neurotrophin inducing properties in astrocytic cells. Yet, the signaling events downstream of erinacine C induced neurotrophin acitivity in neural-like adrenal phaeochromocytoma cells (PC12) cells have remained elusive. Similar, signaling events activated by erinacine C in astrocytic cells are unknown. Using a combination of genetic and pharmacological inhibitors we show that erinacine C induced neurotrophic activity mediates PC12 cell differentiation via the TrkA receptor and likely its associated PLCγ-, PI3K-, and MAPK/ERK pathways. Furthermore, a small library of transcriptional activation reporters revealed that erinacine C induces transcriptional activation mediated by DNA consensus binding sites of selected conserved transcription factor families. Among these, transcription is activated from an ETS consensus in a concentration dependent manner. Interestingly, induced ETS-consensus transcription occurs in parallel and independent of neurotrophin induction. This finding helps to explain the many pleiotropic functions of cyathane diterpenoids. Moreover, our studies provide genetic access to cyathane diterpenoid functions in astrocytic cells and help to mechanistically understand the action of cyathanes in glial cells.
机译:众所周知,哌啶属的药用蘑菇产生具有稳态性能的次级代谢物,用于中枢神经系统。我们和其他人最近证明,这些代谢产物中的胞趾萜类化合物,特别是Erinacine C具有有效的神经营养蛋白在星形胶质细胞中诱导性质。然而,在神经样肾上腺素细胞细胞瘤细胞(PC12)细胞中,Erinacine C诱导的神经营养蛋白效率下游的信号传导事件仍然难以捉摸。类似的,在星形胶质细胞中激活的信号传导事件是未知的。使用遗传和药理学抑制剂的组合,我们表明Erinacine C诱导的神经营养活性通过TRKA受体介导PC12细胞分化,并且可能其相关的PLCγ,PI3K-和MAPK / ERK途径。此外,一小部分转录激活记者病例揭示了Erinacine C诱导由DNA共识的结合位点介导的所选保守转录因子家族的转录激活。其中,转录以浓度依赖性方式从ETS共识中激活。有趣的是,诱导的ETS - 共识转录并行发生并独立于神经营养蛋白诱导。这一发现有助于解释氰基脱萜类的许多亲癖功能。此外,我们的研究提供了对星形胶质细胞中的胞质脱萜功能的遗传进入,并有助于机械地理解胶质细胞中的胞质的作用。

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