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April 12, 2026Advanced Science0 citationsOpen Access

Circular RNA circNrip1 Interacts with SYNCRIP to Promote Neuropathic Pain by Stabilizing Tlr2 mRNA in Primary Sensory Neurons

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XFXiaozhou FengJXJifang XiaoCHCongcong Huang

Key Points

  • Investigate the role of circNrip1 in neuropathic pain and its mechanism of action in sensory neurons.
  • Analyzed circNrip1 expression in dorsal root ganglion (DRG) after nerve injury.
  • Inhibited circNrip1 upregulation to assess effects on Tlr2 mRNA and pain sensitivity.
  • Mimicked circNrip1 upregulation in mice to evaluate effects on pain-like symptoms.
  • Examined binding of circNrip1 and SYNCRIP to Tlr2 mRNA’s 3'-UTR.
  • CircNrip1 is significantly upregulated in injured DRG neurons post-nerve injury.
  • Blocking circNrip1 reduces Tlr2 mRNA and TLR2 protein levels, alleviating pain symptoms.
  • Mimicking circNrip1 upregulation increases Tlr2 mRNA and induces pain-like symptoms in naïve mice.
  • CircNrip1 enhances binding to SYNCRIP, promoting Tlr2 mRNA stability.

Abstract

Nerve injury-induced gene dysregulation in the dorsal root ganglion (DRG) is considered a key molecular basis for neuropathic pain genesis. Circular RNA is emerging as a critical regulator of gene expression. Here, we reported a novel circular RNA circNrip1 formed by back-splicing from exon 3 to exon 2 of the Nrip1 pre-RNA. Peripheral nerve injury upregulates circNrip1, but not Nrip1 mRNA, in injured DRG neurons, at least in part due to increased binding of the RNA-binding protein FUS to Nrip1 pre-RNA, thereby promoting circNrip1 formation. Blocking this upregulation attenuates nerve injury-induced increases in toll-like receptor 2 (Tlr2) mRNA and TLR2 protein levels in injured DRG, as well as nerve injury-induced nociceptive hypersensitivity. Conversely, mimicking this upregulation elevates DRG Tlr2 mRNA and TLR2 protein expression and produces neuropathic pain-like symptoms in naïve mice. Mechanistically, upregulated circNrip1 enhances its binding to the 3'- untranslated region (UTR) of Tlr2 mRNA and to the RNA-binding protein SYNCRIP, thereby recruiting more SYNCRIP to the Tlr2 mRNA 3'-UTR and stabilizing Tlr2 mRNA in injured DRG neurons. Thus, circNrip1 contributes to neuropathic pain by promoting SYNCRIP-triggered stabilization of TLR2 in DRG neurons and represents a promising therapeutic target for intervention.

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Cite This Study

Feng et al. (2026) studied this question.

synapsesocial.com/papers/69db37774fe01fead37c5888https://doi.org/10.1002/advs.202519740
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