Activation of GDNF-ERK-Runx1 signaling contributes to P2X3R gene transcription and bone cancer pain

Bone cancer pain is a common symptom in cancer patients with bone metastases and its underlying mechanisms remain unknown. Here, we report that Runx1 directly upregulates the transcriptional activity of P2X3 receptor (P2X3R) gene promoter in PC12 cells. Knocking down Runx1 in dorsal root ganglion (D...

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Veröffentlicht in:iScience 2022-09, Vol.25 (9), p.104936-104936, Article 104936
Hauptverfasser: Yuan, Zhu-Lin, Liu, Xiao-Dan, Zhang, Zi-Xian, Li, Song, Tian, Yue, Xi, Ke, Cai, Jie, Yang, Xiao-Mei, Liu, Min, Xing, Guo-Gang
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Sprache:eng
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Zusammenfassung:Bone cancer pain is a common symptom in cancer patients with bone metastases and its underlying mechanisms remain unknown. Here, we report that Runx1 directly upregulates the transcriptional activity of P2X3 receptor (P2X3R) gene promoter in PC12 cells. Knocking down Runx1 in dorsal root ganglion (DRG) neurons suppresses the functional upregulation of P2X3R, attenuates neuronal hyperexcitability and pain hypersensitivity in tumor-bearing rats, whereas overexpressing Runx1 promotes P2X3R gene transcription in DRG neurons, induces neuronal hyperexcitability and pain hypersensitivity in naïve rats. Activation of GDNF-GFRα1-Ret-ERK signaling is required for Runx1-mediated P2X3R gene transcription in DRG neurons, and contributes to neuronal hyperexcitability and pain hypersensitivity in tumor-bearing rats. These findings indicate that the Runx1-mediated P2X3R gene transcription resulted from activation of GDNF-GFRα1-Ret-ERK signaling contributes to the sensitization of DRG neurons and pathogenesis of bone cancer pain. Our findings identify a potentially targetable mechanism that may cause bone metastasis-associated pain in cancer patients. [Display omitted] •Runx1 directly upregulates the transcriptional activity of P2X3R gene promoter•Upregulation of Runx1-mediated P2X3R gene transcription underlies bone cancer pain•Involvement of GDNF-Ret-ERK signaling in Runx1-mediated P2X3R gene transcription Physiology; Molecular physiology; Molecular biology; Molecular medicine
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2022.104936