细胞生物学
免疫系统
炎症
促炎细胞因子
Wnt信号通路
生物
条件基因敲除
调节器
免疫学
转录因子
树突状细胞
先天免疫系统
下调和上调
表皮(动物学)
获得性免疫系统
伤口愈合
表型
角质形成细胞
平衡
肿瘤坏死因子α
信号转导
表皮生长因子
免疫
调解人
增强子
干细胞
细胞因子
T细胞
基础(医学)
细胞
作者
Yushuang Sun,Shuqia Xu,Dongyu Wang,Shuiying Gao,Xiaowen Qi,Miao Jiang,Dan Jian,Yaqiong Li,Zhaoyan Jiang,Miao Zhen,Peng Wang,Bin Shu,Julin Xie,Demeng Chen,Qing Tang,Jingting Li
标识
DOI:10.1038/s41423-026-01410-1
摘要
Abstract Keratinocytes are increasingly recognized as central regulators of cutaneous immune responses and key contributors to maintaining immune homeostasis. However, whether and how epidermal stem and progenitor cells (EPSCs) actively suppress proinflammatory signaling pathways to prevent excessive inflammation and maintain epidermal immune quiescence remains unclear. Here, we generated a conditional knockout mouse model (K14-CreERT; Supt6 fl/fl ) to investigate the role of SPT6, a transcription elongation factor, in epidermal and immune homeostasis. Loss of SPT6 in basal keratinocytes led to spontaneous, psoriasis-like skin inflammation, characterized by epidermal hyperplasia, immune cell infiltration, parakeratosis, and hyperkeratosis. SPT6-deficient mice also exhibited significantly delayed wound healing accompanied by impaired Wnt signaling. Moreover, single-cell RNA sequencing revealed distinct keratinocyte subpopulations with inflammatory signatures, elevated NF-κB signaling, and suppressed Wnt signaling. Mechanistically, SPT6 suppresses NF-κB signaling by binding to an enhancer of the RELA gene and preventing its positive transcriptional feedback loop. These findings support a new paradigm in which the default state of the skin may be primed for inflammation, and active suppression by factors such as SPT6 is required to maintain epidermal homeostasis. Taken together, the results of our study reveal a previously unrecognized role for SPT6 as a key regulator of epidermal immune quiescence and tissue integrity.
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