Institute of Biochemistry and Biophysics, PAS, Pawinskiego 5a, 02-109 Warsaw, Poland.
Institute of Biochemistry and Biophysics, PAS, Pawinskiego 5a, 02-109 Warsaw, Poland.
Structure. 2021 Sep 2;29(9):989-1002.e6. doi: 10.1016/j.str.2021.04.002. Epub 2021 Apr 21.
The receptor for advanced glycation end products (RAGE) is an immunoglobulin-type multiligand transmembrane protein expressed in numerous cell types, including the central nervous system cells. RAGE interaction with S100B, released during brain tissue damage, leads to RAGE upregulation and initialization of a spiral proinflammatory associated with different neural disorders. Here, we present the structural characterization of the hetero-oligomeric complex of the full-length RAGE with S100B, obtained by a combination of mass spectrometry-based methods and molecular modeling. We predict that RAGE functions as a tightly packed tetramer exposing a positively charged surface formed by V domains for S100B binding. Based on HDX results we demonstrate an allosteric coupling of the distal extracellular V domains and the transmembrane region, indicating a possible mechanism of signal transmission by RAGE across the membrane. Our model provides an insight into RAGE-ligand interactions, providing a basis for the rational design of the therapeutic modifiers of its activity.
晚期糖基化终产物受体(RAGE)是一种免疫球蛋白型多配体跨膜蛋白,表达于多种细胞类型,包括中枢神经系统细胞。RAGE 与 S100B 相互作用,S100B 在脑组织损伤时释放,导致 RAGE 上调和与不同神经紊乱相关的螺旋性炎症级联反应的启动。在这里,我们通过基于质谱的方法和分子建模相结合,对全长 RAGE 与 S100B 的异源寡聚复合物进行了结构表征。我们预测 RAGE 作为一个紧密堆积的四聚体发挥作用,暴露出一个带正电荷的表面,由 V 结构域形成,用于 S100B 结合。根据 HDX 结果,我们证明了远端细胞外 V 结构域和跨膜区域的变构偶联,表明 RAGE 通过膜传递信号的可能机制。我们的模型深入了解了 RAGE-配体相互作用,为其活性的治疗修饰剂的合理设计提供了基础。