Nonpeptidergic neurons suppress mast cells via glutamate to maintain skin homeostasis

非肽能神经元通过谷氨酸抑制肥大细胞以维持皮肤稳态

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作者:Shiqun Zhang, Tara N Edwards, Virendra K Chaudhri, Jianing Wu, Jonathan A Cohen, Toshiro Hirai, Natalie Rittenhouse, Elizabeth G Schmitz, Paul Yifan Zhou, Benjamin D McNeil, Yi Yang, H Richard Koerber, Tina L Sumpter, Amanda C Poholek, Brian M Davis, Kathryn M Albers, Harinder Singh, Daniel H Kaplan

Abstract

Cutaneous mast cells mediate numerous skin inflammatory processes and have anatomical and functional associations with sensory afferent neurons. We reveal that epidermal nerve endings from a subset of sensory nonpeptidergic neurons expressing MrgprD are reduced by the absence of Langerhans cells. Loss of epidermal innervation or ablation of MrgprD-expressing neurons increased expression of a mast cell gene module, including the activating receptor, Mrgprb2, resulting in increased mast cell degranulation and cutaneous inflammation in multiple disease models. Agonism of MrgprD-expressing neurons reduced expression of module genes and suppressed mast cell responses. MrgprD-expressing neurons released glutamate which was increased by MrgprD agonism. Inhibiting glutamate release or glutamate receptor binding yielded hyperresponsive mast cells with a genomic state similar to that in mice lacking MrgprD-expressing neurons. These data demonstrate that MrgprD-expressing neurons suppress mast cell hyperresponsiveness and skin inflammation via glutamate release, thereby revealing an unexpected neuroimmune mechanism maintaining cutaneous immune homeostasis.

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