Ren Xiaoming, Gelinas Amy D, von Carlowitz Ira, Janjic Nebojsa, Pyle Anna Marie
Department of Molecular, Cellular, and Developmental Biology, Yale University, 219 Prospect Street, New Haven, CT, 06511, USA.
Department of Chemistry, Howard Hughes Medical Institute, Yale University, New Haven, CT, 06511, USA.
Nat Commun. 2017 Oct 9;8(1):810. doi: 10.1038/s41467-017-00864-2.
IL-1α is an essential cytokine that contributes to inflammatory responses and is implicated in various forms of pathogenesis and cancer. Here we report a naphthyl modified DNA aptamer that specifically binds IL-1α and inhibits its signaling pathway. By solving the crystal structure of the IL-1α/aptamer, we provide a high-resolution structure of this critical cytokine and we reveal its functional interaction interface with high-affinity ligands. The non-helical aptamer, which represents a highly compact nucleic acid structure, contains a wealth of new conformational features, including an unknown form of G-quadruplex. The IL-1α/aptamer interface is composed of unusual polar and hydrophobic elements, along with an elaborate hydrogen bonding network that is mediated by sodium ion. IL-1α uses the same interface to interact with both the aptamer and its cognate receptor IL-1RI, thereby suggesting a novel route to immunomodulatory therapeutics.The cytokine interleukin 1α (IL-1α) plays an important role in inflammatory processes. Here the authors use SELEX to generate a modified DNA aptamer which specifically binds IL-1α, present the structure of the IL-1α/aptamer complex and show that this aptamer inhibits the IL-1α signaling pathway.
白细胞介素-1α(IL-1α)是一种重要的细胞因子,参与炎症反应,并与多种发病机制和癌症相关。在此,我们报告一种萘基修饰的DNA适配体,它能特异性结合IL-1α并抑制其信号通路。通过解析IL-1α/适配体的晶体结构,我们提供了这种关键细胞因子的高分辨率结构,并揭示了其与高亲和力配体的功能相互作用界面。这种非螺旋适配体代表了一种高度紧凑的核酸结构,包含许多新的构象特征,包括一种未知形式的G-四链体。IL-1α/适配体界面由不寻常的极性和疏水元件组成,以及一个由钠离子介导的精细氢键网络。IL-1α利用相同的界面与适配体及其同源受体IL-1RI相互作用,从而提示了一条免疫调节治疗的新途径。细胞因子白细胞介素1α(IL-1α)在炎症过程中起重要作用。本文作者利用指数富集的配体系统进化技术(SELEX)生成了一种特异性结合IL-1α的修饰DNA适配体,给出了IL-1α/适配体复合物的结构,并表明这种适配体抑制IL-1α信号通路。