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Conformational Flexibility of the Ligand-Binding Domain Dimer in Kainate Receptor Gating and Desensitization

机译:配体结合域二聚体在海藻酸盐受体门控和脱敏中的构象灵活性。

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摘要

AMPA- and kainate (KA)-selective ionotropic glutamate receptors (iGluRs) respond to agonist by opening (gating), then closing (desensitizing) in quick succession. Gating has been linked to agonist-induced changes within the ligand-binding domain (LBD), and desensitization to rearrangement of a dimer formed by neighboring LBDs. To explore the role of dimer conformation in both gating and desensitization, we compared the conformational effects of two kainate receptor mutants. The first, GluK2-D776K, blocks desensitization of macroscopic current responses (“macroscopic desensitization”). The second, GluK2-M770K, accelerates macroscopic desensitization and eliminates the effects of external ions on channel kinetics. Using structures determined by x-ray crystallography, we found that in both mutants the introduced lysines act as tethered cations, displacing sodium ions from their binding sites within the dimer interface. This results in new inter- and intra-protomer contacts in D776K and M770K respectively, explaining the effects of these mutations on dimer stability and desensitization kinetics. Further, chloride binding was unaffected by the M770K mutation, even though binding of sodium ions has been proposed to promote dimer stability by stabilizing anion binding. This suggests sodium binding may affect receptor function more directly than currently supposed. Notably, we also observed a ligand-specific shift in dimer conformation when comparing LBD dimers in complex with glutamate or the partial agonist KA, revealing a previously unidentified role for dimer orientation in iGluR gating.
机译:AMPA和海藻酸盐(KA)选择性离子型谷氨酸受体(iGluRs)通过依次打开(门控)然后关闭(脱敏)来响应激动剂。门控已与激动剂诱导的配体结合域(LBD)内的变化有关,并且对相邻LBD形成的二聚体的重排不敏感。为了探索二聚体构象在门控和脱敏中的作用,我们比较了两个海藻酸酯受体突变体的构象作用。第一个是GluK2-D776K,它可以阻止宏观电流响应的脱敏(“宏观脱敏”)。第二种是GluK2-M770K,它可以促进宏观脱敏,并消除外部离子对通道动力学的影响。使用通过X射线晶体学确定的结构,我们发现在这两个突变体中,引入的赖氨酸均作为束缚的阳离子,从其二聚体界面内的结合位点置换钠离子。这分别在D776K和M770K中导致了新的内部和内部启动子接触,从而解释了这些突变对二聚体稳定性和脱敏动力学的影响。此外,即使已提出钠离子的结合通过稳定阴离子结合来促进二聚体稳定性,氯化物结合也不受M770K突变的影响。这表明钠结合可能比目前预期的更直接地影响受体功能。值得注意的是,当将LBD二聚体与谷氨酸或部分激动剂KA进行比较时,我们还观察到了二聚体构象的配体特异性位移,揭示了iGluR门控中二聚体取向的先前未确定的作用。

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