机械敏感通道
敏化
神经科学
组胺
瞬时受体电位通道
生物
细胞生物学
离子通道
受体
遗传学
药理学
作者
Ping Lü,Yue Zhao,Zili Xie,Xinzhong Dong,Gregory F. Wu,Brian Kim,Jing Feng,Hongzhen Hu
标识
DOI:10.1101/2022.06.22.497257
摘要
SUMMARY Although touch and itch are coded by distinct neuronal populations, light touch also provokes itch in the presence of exogenous pruritogens, resulting in a phenomenon called alloknesis. However, the cellular and molecular mechanisms underlying the initiation of pruritogen-induced mechanical itch sensitization are poorly understood. Here we show that intradermal injections of histamine or chloroquine (CQ) provoke alloknesis through activation of TRPV1- and MrgprA3- expressing prurioceptors, and functional ablation of these neurons reverses pruritogen-induced alloknesis. Moreover, genetic ablation of mechanosensitive Piezo2 channel function from MrgprA3-expressing prurioceptors also dampens pruritogen-induced alloknesis. Mechanistically, histamine and CQ sensitize Piezo2 channel function through activation of the PLC-PKCδ signaling. Collectively, our data uncovered a TRPV1 + /MrgprA3 + prurioceptor-Piezo2 signaling axis in the initiation of pruritogen-induced mechanical itch sensitization in the skin.
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