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分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

角质形成细胞来源的代谢警报素增强系统性体液免疫

Ji Zhenglin, Gao Ji, Zhang Shaocun, Li Jiajie, Wu Haijing, Yao Jing, Ma Xianqiang, Xin Yue, Zhu Yongjie, Zhao Meng, Zhao Zhidan, Shen Kai, Wu Tao, Qian Xinmin, Wang Juanjuan, An Haoran, Li Yuxin, Sun Wenbo, Zhao Qiancheng, Zhou Xiaoying, Gao Ruiyu, Duan Qinghui, Li Cuifeng, Geng Xiaoke, Yang Ming, Xiao Rong, Liu Juan, Wang Wang, Wang Ji, Fu Yesheng, Zhang Jing-Ren, Chen Xiangjun, Tong Pei, Cheng Gong, Qi Hai, Wu Li, Zeng Wenwen, Xi Qiaoran, Zhang Lingqiang, Lai Yuping, Yang Wei, Zhang Yonghui, Lu Qianjin, Liu Wanli

Journal:NATURE

IF:48.5

DOI:10.1038/s41586-026-10167-6

PMID:

Published:2026-03-04

research field:分子生物学疫苗学皮肤科免疫学自身免疫性疾病代谢学

Abstract

How a local infection triggers systemic humoral immunity remains unclear. Here we identify farnesyl pyrophosphate (FPP), a mevalonate pathway metabolic intermediate 1 , as an endogenous alarmin that enhances IgG antibody responses through keratinocyte-derived IL-6 and CCL20. This signalling axis potentiates the differentiation of T follicular helper cells and migratory dendritic cells 2 , 3 . FPP accumulates within keratinocytes after infection or ultraviolet irradiation through the activation of the mevalonate pathway mediated by the unfolded protein response–SREBF pathway, amplifying germinal centre (GC) responses in draining lymph nodes. Mechanistically, accumulated FPP in the cytosol engages transient receptor potential vanilloid 3 (TRPV3) by binding to its intracellular domains, inducing Ca 2+ influx that subsequently activates the calmodulin–calcineurin–NFAT and PYK2–RAS–ERK pathways to enhance IL-6 and CCL20 production. This FPP–TRPV3–IL-6/CCL20–GC axis potentiates pathogen-specific antibody production, conferring protection in wild-type but not TRPV3-deficient mice. Single-cell RNA-sequencing analyses of systemic lupus erythematosus (SLE) skin lesions and pathogen-infected mouse skin demonstrate hyperactivation of this signalling axis, particularly in the TRPV3 high keratinocyte subset. In mouse models of SLE, the activation of this axis correlates with exacerbated disease pathology. Thus, FPP potentiates systemic humoral immunity through the TRPV3–IL-6/CCL20–GC signalling axis, providing insights for the development of vaccine adjuvants and potential therapeutics for SLE.

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