CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.
Department of Immunobiology, University of Lausanne, Epalinges, Switzerland.
Nat Commun. 2023 Oct 20;14(1):6626. doi: 10.1038/s41467-023-42070-3.
Dysregulation of pathogen-recognition pathways of the innate immune system is associated with multiple autoimmune disorders. Due to the intricacies of the molecular network involved, the identification of pathway- and disease-specific therapeutics has been challenging. Using a phenotypic assay monitoring the degradation of the immune adapter TASL, we identify feeblin, a chemical entity which inhibits the nucleic acid-sensing TLR7/8 pathway activating IRF5 by disrupting the SLC15A4-TASL adapter module. A high-resolution cryo-EM structure of feeblin with SLC15A4 reveals that the inhibitor binds a lysosomal outward-open conformation incompatible with TASL binding on the cytoplasmic side, leading to degradation of TASL. This mechanism of action exploits a conformational switch and converts a target-binding event into proteostatic regulation of the effector protein TASL, interrupting the TLR7/8-IRF5 signaling pathway and preventing downstream proinflammatory responses. Considering that all components involved have been genetically associated with systemic lupus erythematosus and that feeblin blocks responses in disease-relevant human immune cells from patients, the study represents a proof-of-concept for the development of therapeutics against this disease.
先天免疫系统病原体识别途径的失调与多种自身免疫性疾病有关。由于涉及的分子网络错综复杂,因此识别具有特定途径和疾病的治疗方法具有挑战性。我们使用一种表型测定法来监测免疫接头 TASL 的降解,从而鉴定出抑制核酸感应 TLR7/8 途径的化合物 feeblin,该途径通过破坏 SLC15A4-TASL 接头模块来激活 IRF5。Feeblin 与 SLC15A4 的高分辨率冷冻电镜结构表明,该抑制剂结合了一种溶酶体外向开放构象,与细胞质侧上 TASL 的结合不兼容,导致 TASL 的降解。这种作用机制利用构象转变将靶标结合事件转化为效应蛋白 TASL 的蛋白质稳态调节,中断 TLR7/8-IRF5 信号通路并阻止下游促炎反应。考虑到所有涉及的成分都已在遗传上与系统性红斑狼疮有关,并且 feeblin 阻止了来自患者的疾病相关人类免疫细胞的反应,该研究代表了针对这种疾病开发治疗方法的概念验证。