Division of Biomedical Convergence, Kangwon National University, Chuncheon, 24341, Republic of Korea.
Institute of Bioscience and Biotechnology, Kangwon National University, Chuncheon, 24341, Republic of Korea.
IUCrJ. 2023 May 1;10(Pt 3):352-362. doi: 10.1107/S2052252523002956.
Toll-like receptors (TLRs) activate innate immunity in response to pathogen-associated molecular patterns (PAMPs). The ectodomain of a TLR directly senses a PAMP and the intracellular TIR domain dimerizes to initiate a signaling cascade. The TIR domains of TLR6 and TLR10, which belong to the TLR1 subfamily, have been structurally characterized in a dimer, whereas those of other subfamilies, including TLR15, have not been explored at the structural or molecular level. TLR15 is a TLR unique to birds and reptiles that responds to virulence-associated fungal and bacterial proteases. To reveal how the TLR15 TIR domain (TLR15) triggers signaling, the crystal structure of TLR15 was determined in a dimeric form and a mutational study was performed. TLR15 forms a one-domain structure in which a five-stranded β-sheet is decorated by α-helices, as shown for TLR1 subfamily members. TLR15 exhibits substantial structural differences from other TLRs at the BB and DD loops and αC2 helix that are involved in dimerization. As a result, TLR15 is likely to form a dimeric structure that is unique in its intersubunit orientation and the contribution of each dimerizing region. Further comparative analysis of TIR structures and sequences provides insights into the recruitment of a signaling adaptor protein by TLR15.
Toll 样受体 (TLRs) 通过识别病原体相关分子模式 (PAMPs) 激活先天免疫。TLR 的胞外结构域直接感知 PAMP,胞内 TIR 结构域二聚化以启动信号级联反应。TLR1 亚家族的 TLR6 和 TLR10 的 TIR 结构域已在二聚体形式下进行了结构表征,而其他亚家族(包括 TLR15)的 TIR 结构域尚未在结构或分子水平上进行探索。TLR15 是鸟类和爬行动物特有的 TLR,可响应与毒力相关的真菌和细菌蛋白酶。为了揭示 TLR15 TIR 结构域 (TLR15) 如何引发信号转导,测定了 TLR15 的二聚体形式的晶体结构并进行了突变研究。TLR15 形成一种单结构域结构,其中五条β-折叠被α-螺旋修饰,与 TLR1 亚家族成员相似。TLR15 在 BB 和 DD 环以及涉及二聚化的 αC2 螺旋处与其他 TLR 存在显著的结构差异。因此,TLR15 可能形成一种独特的二聚体结构,其亚基间取向和每个二聚化区域的贡献均不同。对 TIR 结构和序列的进一步比较分析提供了对 TLR15 募集信号接头蛋白的深入了解。