Laboratory of Membrane Protein Biology, National Centre for Cell Science, NCCS Complex, S. P. Pune University, Maharashtra, Pune, 411007, India.
Sci Rep. 2019 Jul 16;9(1):10254. doi: 10.1038/s41598-019-46770-z.
GluK3-kainate receptors are atypical members of the iGluR family that reside at both the pre- and postsynapse and play a vital role in the regulation of synaptic transmission. For a better understanding of structural changes that underlie receptor functions, GluK3 receptors were trapped in desensitized and resting/closed states and structures analyzed using single particle cryo-electron microscopy. While the desensitized GluK3 has domain organization as seen earlier for another kainate receptor-GluK2, antagonist bound GluK3 trapped a resting state with only two LBD domains in dimeric arrangement necessary for receptor activation. Using structures as a guide, we show that the N-linked glycans at the interface of GluK3 ATD and LBD likely mediate inter-domain interactions and attune receptor-gating properties. The mutational analysis also identified putative N-glycan interacting residues. Our results provide a molecular framework for understanding gating properties unique to GluK3 and exploring the role of N-linked glycosylation in their modulation.
GluK3- 型氨酸受体是 iGluR 家族的非典型成员,存在于突触前和突触后,在调节突触传递中发挥着重要作用。为了更好地理解受体功能的结构变化,使用单颗粒冷冻电镜分析技术将 GluK3 受体困在脱敏和静息/关闭状态下进行结构分析。虽然脱敏的 GluK3 具有与以前观察到的另一种型氨酸受体-GluK2 相同的结构域组织,但结合拮抗剂的 GluK3 被困在仅具有两个 LBD 结构域的静息状态,这种二聚体排列对于受体激活是必需的。利用这些结构作为指导,我们表明 GluK3 ATD 和 LBD 界面处的 N 连接糖基可能介导结构域间相互作用,并调节受体门控特性。突变分析还确定了潜在的 N-糖基相互作用残基。我们的研究结果为理解 GluK3 独特的门控特性提供了分子框架,并探索了 N-糖基化在其调节中的作用。