Institute of Physical and Theoretical Chemistry, Goethe University, Max-von-Laue-Strasse 7, 60438 Frankfurt am Main, Germany.
Division of Molecular Internal Medicine, Department of Internal Medicine II, University Hospital Würzburg, Auverahaus, Grombühlstrasse 12, 97080 Würzburg, Germany.
Sci Signal. 2020 Jan 14;13(614):eaax5647. doi: 10.1126/scisignal.aax5647.
Ligand-induced tumor necrosis factor receptor 1 (TNFR1) activation controls nuclear factor κ-light-chain-enhancer of activated B cells (NF-κB) signaling, cell proliferation, programmed cell death, and survival and is crucially involved in inflammation, autoimmune disorders, and cancer progression. Despite the relevance of TNFR1 clustering for signaling, oligomerization of ligand-free and ligand-activated TNFR1 remains controversial. At present, models range from ligand-independent receptor predimerization to ligand-induced oligomerization. Here, we used quantitative, single-molecule superresolution microscopy to study TNFR1 assembly directly in native cellular settings and at physiological cell surface abundance. In the absence of its ligand TNFα, TNFR1 assembled into monomeric and dimeric receptor units. Upon binding of TNFα, TNFR1 clustered predominantly not only into trimers but also into higher-order oligomers. A functional mutation in the preligand assembly domain of TNFR1 resulted in only monomeric TNFR1, which exhibited impaired ligand binding. In contrast, a form of TNFR1 with a mutation in the ligand-binding CRD2 subdomain retained the monomer-to-dimer ratio of the unliganded wild-type TNFR1 but exhibited no ligand binding. These results underscore the importance of ligand-independent TNFR1 dimerization in NF-κB signaling.
配体诱导的肿瘤坏死因子受体 1(TNFR1)激活控制核因子 κ-轻链增强子的活化 B 细胞(NF-κB)信号转导、细胞增殖、程序性细胞死亡和存活,并且与炎症、自身免疫性疾病和癌症进展密切相关。尽管 TNFR1 聚集对于信号转导很重要,但配体非结合和配体激活的 TNFR1 寡聚化仍然存在争议。目前,模型范围从配体独立的受体预二聚体到配体诱导的寡聚体。在这里,我们使用定量、单分子超分辨率显微镜直接在天然细胞环境中和生理细胞表面丰度下研究 TNFR1 的组装。在没有其配体 TNFα 的情况下,TNFR1 组装成单体和二聚体受体单元。在结合 TNFα 后,TNFR1 主要聚集形成三聚体,但也形成更高阶的寡聚体。TNFR1 的前配体组装结构域中的功能突变导致仅形成单体 TNFR1,其表现出受损的配体结合。相比之下,一种具有配体结合 CRD2 亚结构域突变的 TNFR1 形式保留了未结合的野生型 TNFR1 的单体到二聚体的比例,但没有配体结合。这些结果强调了配体非依赖性 TNFR1 二聚化在 NF-κB 信号转导中的重要性。