首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Charge-inverting Mutation in the Linker Region of α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid (AMPA) Receptors Alters Agonist Binding and Gating Kinetics Independently of Allosteric Modulators
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A Charge-inverting Mutation in the Linker Region of α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid (AMPA) Receptors Alters Agonist Binding and Gating Kinetics Independently of Allosteric Modulators

机译:α-氨基-3-羟基-5-羟基-4-甲基-4-异恶唑丙酸(AMPA)受体的连接子区域中的电荷反转突变独立于变构调节剂改变激动剂结合和门控动力学。

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摘要

AMPA receptors are gated through binding of glutamate to a solvent-accessible ligand-binding domain. Upon glutamate binding, these receptors undergo a series of conformational rearrangements regulating channel function. Allosteric modulators can bind within a pocket adjacent to the ligand-binding domain to stabilize specific conformations and prevent desensitization. Yelshansky et al. (Yelshansky, M. V., Sobolevsky, A. I., Jatzke, C., and Wollmuth, L. P. (2004) J. Neurosci. 24, 4728–4736) described a model of an electrostatic interaction between the ligand-binding domain and linker region to the pore that regulated channel desensitization. To test this hypothesis, we have conducted a series of experiments focusing on the R628E mutation. Using ultrafast perfusion with voltage clamp, we applied glutamate to outside-out patches pulled from transiently transfected HEK 293 cells expressing wild type or R628E mutant GluA2. In response to a brief pulse of glutamate (1 ms), mutant receptors deactivated with significantly slower kinetics than wild type receptors. In addition, R628E receptors showed significantly more steady-state current in response to a prolonged (500-ms) glutamate application. These changes in receptor kinetics occur through a pathway that is independent of that of allosteric modulators, which show an additive effect on R628E receptors. In addition, ligand binding assays revealed the R628E mutation to have increased affinity for agonist. Finally, we reconciled experimental data with computer simulations that explicitly model mutant and modulator interactions. Our data suggest that R628E stabilizes the receptor closed cleft conformation by reducing agonist dissociation and the transition to the desensitized state. These results suggest that the AMPA receptor external vestibule is a viable target for new positive allosteric modulators.
机译:AMPA受体通过谷氨酸与溶剂可及的配体结合域的结合来控制。谷氨酸结合后,这些受体经历一系列调节通道功能的构象重排。变构调节剂可以在与配体结合结构域相邻的口袋中结合,以稳定特定构象并防止脱敏。 Yelshansky等。 (Yelshansky,MV,Sobolevsky,AI,Jatzke,C.和Wollmuth,LP(2004)J. Neurosci。24,4728-4736)描述了配体结合结构域和孔连接区之间的静电相互作用模型调节通道脱敏。为了验证这一假设,我们针对R628E突变进行了一系列实验。使用电压钳超快速灌流,我们将谷氨酸盐应用于从表达野生型或R628E突变体GluA2的瞬时转染的HEK 293细胞中提取的外在斑块。响应短暂的谷氨酸脉冲(1毫秒),突变体受体的失活速度比野生型受体慢得多。此外,R628E受体响应于延长(500-ms)的谷氨酸施用而显示出明显更高的稳态电流。受体动力学的这些变化是通过与变构调节剂无关的途径发生的,该途径对R628E受体表现出累加效应。另外,配体结合测定显示R628E突变对激动剂具有增加的亲和力。最后,我们将实验数据与明确模拟突变体和调节剂相互作用的计算机模拟进行了协调。我们的数据表明R628E通过减少激动剂解离和过渡到脱敏状态来稳定受体的闭合裂口构象。这些结果表明,AMPA受体外部前庭是新的正构构调节剂的可行目标。

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