| Literature DB >> 30033153 |
Qingjian Han1, Di Liu1, Marino Convertino2, Zilong Wang1, Changyu Jiang1, Yong Ho Kim1, Xin Luo1, Xin Zhang1, Andrea Nackley1, Nikolay V Dokholyan2, Ru-Rong Ji3.
Abstract
Increasing evidence suggests that extracellular miRNAs may serve as biomarkers of diseases, but the physiological relevance of extracellular miRNA is unclear. We find that intradermal cheek injection of miR-711 induces TRPA1-depedent itch (scratching) without pain (wiping) in naive mice. Extracellular perfusion of miR-711 induces TRPA1 currents in both Trpa1-expressing heterologous cells and native sensory neurons through the core sequence GGGACCC. Computer simulations reveal that the core sequence binds several residues at the extracellular S5-S6 loop of TRPA1, which are critical for TRPA1 activation by miR-711 but not allyl isothiocyanate. Intradermal inoculation of human Myla cells induces lymphoma and chronic itch in immune-deficient mice, associated with increased serum levels of miR-711, secreted from cancer cells. Lymphoma-induced chronic itch is suppressed by miR-711 inhibitor and a blocking peptide that disrupts the miR-711/TRPA1 interaction. Our findings demonstrated an unconventional physiological role of extracellular naked miRNAs as itch mediators and ion channel modulators.Entities:
Keywords: Dorsal root ganglion (DRG); Toll-like receptor 7 (TLR7); itch; lymphoma; miRNAs; mice; pain; pruritus; scratching; transient receptor potential ankyrin 1 (TRPA1)
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Year: 2018 PMID: 30033153 PMCID: PMC6091677 DOI: 10.1016/j.neuron.2018.06.039
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173