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Radial symmetry in a chimeric glutamate receptor pore

机译:嵌合谷氨酸受体孔中的径向对称

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Ionotropic glutamate receptors comprise two conformationally different A/C and B/D subunit pairs. Closed channels exhibit fourfold radial symmetry in the transmembrane domain (TMD) but transition to twofold dimer-of-dimers symmetry for extracellular ligand binding and N-terminal domains. Here, to evaluate symmetry in open pores we analysed interaction between the Q/R editing site near the pore loop apex and the transmembrane M3 helix of kainate receptor subunit GluK2. Chimeric subunits that combined the GluK2 TMD with extracellular segments from NMDA receptors, which are obligate heteromers, yielded channels made up of A/C and B/D subunit pairs with distinct substitutions along M3 and/or Q/R site editing status, in an otherwise identical homotetrameric TMD. Our results indicate that Q/R site interaction with M3 occurs within individual subunits and is essentially the same for both A/C and B/D subunit conformations, suggesting that fourfold pore symmetry persists in the open state.
机译:离子型谷氨酸受体包含两个构象不同的A / C和B / D亚基对。封闭通道在跨膜结构域(TMD)中显示四重径向对称性,但过渡到胞外配体结合和N端结构域的二聚体二聚体对称。在这里,为了评估开孔中的对称性,我们分析了孔loop顶点附近的Q / R编辑位点与海藻酸盐受体亚基GluK2的跨膜M3螺旋之间的相互作用。将GluK2 TMD与来自NMDA受体的细胞外片段结合的嵌合亚基(专性异源),产生了由A / C和B / D亚基对组成的通道,沿着M3和/或Q / R位点编辑状态具有明显的取代。否则相同的同四聚体TMD。我们的结果表明与M3的Q / R位点相互作用发生在单个亚基中,并且对于A / C和B / D亚基构象基本相同,这表明四重孔对称性在开放状态下持续存在。

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