Proenkephalin<sup>+</sup> regulatory T cells expanded by ultraviolet B exposure maintain skin homeostasis with a healing function.

Shime, Hiroaki; Odanaka, Mizuyu; Tsuiji, Makoto; Matoba, Takuma; Imai, Masaki; Yasumizu, Yoshiaki; Uraki, Ryuta; Minohara, Kiyoshi et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

Regulatory T (Treg) cells, expressing CD25 (interleukin-2 receptor α chain) and Foxp3 transcription factor, maintain immunological self-tolerance and suppress various immune responses. Here we report a feature of skin Treg cells expanded by ultraviolet B (UVB) exposure. We found that skin Treg cells possessing a healing function are expanded by UVB exposure with the expression of an endogenous opioid precursor, proenkephalin (PENK). Upon UVB exposure, skin Treg cells were expanded with a unique TCR repertoire. Also, they highly expressed a distinctive set of genes enriched in "wound healing involved in inflammatory responses" and the "neuropeptide signaling pathway," as indicated by the high expression of <i>Penk.</i> We found that not only was PENK expression at the protein level detected in the UVB-expanded skin Treg (UVB-skin Treg) cells, but that a PENK-derived neuropeptide, methionine enkephalin (Met-ENK), from Treg cells promoted the outgrowth of epidermal keratinocytes in an ex vivo skin explant assay. Notably, UVB-skin Treg cells also promoted wound healing in an in vivo wound closure assay. In addition, UVB-skin Treg cells produced amphiregulin (AREG), which plays a key role in Treg-mediated tissue repair. Identification of a unique function of PENK<sup>+</sup> UVB-skin Treg cells provides a mechanism for maintaining skin homeostasis.

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