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TRAM 促进不依赖 Toll 样受体的 myddosome 信号转导

TRAM promotes Toll-like-receptor-free myddosome signal transduction

Nature · 2026 年 9 月 23 日 · Daniel Fisch, Vaani Ohri, Eleni Anastasakou 等 7 人

体外 / 类器官研究
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发现 TRAM 驱动 myddosome 成熟,从而维持数小时的炎症信号。

Toll 样受体(免疫细胞识别病原体的受体)被激活后,会先在细胞膜附近形成 proto-myddosome,再释放到细胞质中成熟为 myddosome,持续数小时启动炎症基因表达。但控制这一成熟过程的机制此前不清楚。研究者在巨噬细胞中做遗传筛选,发现衔接蛋白 TRAM 是关键调控者:TIRAP 先启动 proto-myddosome,TRAM 再把 MyD88 从受体复合物上解离下来,使 myddosome 得以成熟并传递信号。缺乏 TRAM 时信号异常且不稳定。用化学方法拆散胞质中的 myddosome 可中断细胞在体内外的炎症活动。该工作阐明了受体外信号转导的分子基础。

为什么推荐给您:揭示TRAM调控myddosome成熟的新机制,具转化潜力但尚属基础研究。

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摘要Abstract

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In the Toll-like receptor (TLR) signal transduction pathways, activated receptors are present for mere minutes within the initial, membrane-proximal signalling complexes called proto-myddosomes1. Proto-myddosomes are rapidly released from TLRs to self-assemble (that is, mature) into enzyme-rich, cytosolic supramolecular organizing centres called myddosomes2-4. Myddosomes induce hours-long inflammatory gene expression5-10. The mechanism controlling proto-myddosome release and its effect on signal transduction are undefined. Here we identify factors that regulate the maturation process of proto-myddosomes into receptor-free cytosolic myddosomes11. Through a genetic screen in macrophages, we identify TRAM, which was previously described to control MyD88-independent TLR signalling, as a regulator of myddosome assembly. Using biochemistry, live-cell imaging and activity reconstitution with recombinant proteins, we show that the plasma-membrane-associated adapter TIRAP seeds proto-myddosomes12,13, after which TRAM dissociates MyD88 from the TLR-TIRAP complex to enable myddosome maturation and downstream signal transduction14-19. In the absence of TRAM, MyD88 cannot dissociate from the TLR-TIRAP complex, resulting in abnormal and unstable MyD88 interactions with downstream signalling enzymes. These findings enabled us to identify TRAM-dependent long-lasting myddosome activities as the determinant of two TLR pathway hallmarks: hours-long NF-κB activation20-24 and secondary response gene expression25-27. Chemical dissociation of cytosolic myddosomes disrupted existing inflammatory activities of TLR-stimulated cells in vitro and in vivo. Collectively, this work establishes TRAM as a regulator of myddosome maturation and signalling, providing the molecular basis for receptor-free signal transduction.

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