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Spectroscopic and functional investigations of the AMPA subtype of ionotropic glutamate receptors.

机译:离子型谷氨酸受体AMPA亚型的光谱和功能研究。

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摘要

Ion channels play a crucial role in the functioning of different systems of the body because of their ability to bridge the cell membrane and allow ions to pass in and out of the cell. Ionotropic glutamate receptors are one class of these important proteins and have been shown to be critical in propagating synaptic transmission in the central nervous system and in other diverse functions throughout the body. Because of their wide-ranging effects, this family of receptors is an important target for structure-function investigations to understand their mechanism of action.;α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors are one subtype of glutamate receptors and have been shown to be the primary receptors involved in rapid excitatory signaling in the central nervous system. Agonist binding to the extracellular ligand binding domain of these receptors causes various conformational changes that culminate in formation of the ion channel. Previous structural investigations have provided important information about their mechanism of action, including uncovering a relationship between the degree of cleft closure in the binding domain and activation of the receptor. However, what question remains unanswered is how specific interactions between the agonist and the protein interplay with cleft closure to mediate receptor activation.;To investigate this question, I applied a multiscale approach to investigate the effects of agonist binding on various levels. Vibrational spectroscopy was utilized to investigate molecular-level interactions in the binding pocket, and fluorescence resonance energy transfer (FRET) was employed to measure cleft closure in the isolated ligand binding domain. The results of these studies in the isolated binding domain were then correlated to activation of the full receptor. These investigations showed a relationship between the strength of the interaction at the α-amine group of the agonist and extent of receptor activation, where a stronger interaction correlated to a larger activation, which was upheld even when the extent of cleft closure did not correlate to activation. These results show that this interaction at the α-amine group is critical in mediating the allosteric mechanism of activation and provide a bit more insight into how agonist binding is coupled to channel gating in AMPA receptors.
机译:离子通道由于其桥接细胞膜并允许离子进入和离开细胞的能力,在人体不同系统的功能中起着至关重要的作用。离子型谷氨酸受体是这些重要蛋白质中的一类,并已显示出在中枢神经系统和整个身体其他多种功能中传播突触传递的关键。由于其广泛的作用,该受体家族是结构功能研究以了解其作用机理的重要目标。α-氨基-3-羟基-5-甲基-5-甲基-4-异恶唑丙酸(AMPA)受体是谷氨酸受体的一种亚型,已被证明是参与中枢神经系统快速兴奋性信号传导的主要受体。与这些受体的细胞外配体结合结构域结合的激动剂引起各种构象变化,这些构象变化最终形成离子通道。先前的结构研究提供了有关其作用机理的重要信息,包括揭示结合域中的裂隙闭合程度与受体活化之间的关系。然而,仍然没有答案的问题是激动剂和蛋白质与缝隙闭合之间的特异性相互作用如何介导受体活化。为了研究这个问题,我应用了一种多尺度方法研究了激动剂结合在不同水平上的作用。利用振动光谱研究结合口袋中的分子水平相互作用,并利用荧光共振能量转移(FRET)来测量分离的配体结合域中的裂缝闭合。然后,将这些在分离的结合域中的研究结果与全受体的激活相关。这些研究表明,在激动剂的α-胺基团上的相互作用强度与受体活化程度之间存在相关性,其中较强的相互作用与较大的活化作用相关,即使裂隙闭合程度与激活。这些结果表明,在α-胺基团上的这种相互作用对于介导激活变构机制至关重要,并为激动剂结合如何与AMPA受体的通道门控偶联提供了更多的见识。

著录项

  • 作者

    Mankiewicz, Kimberly Anne.;

  • 作者单位

    The University of Texas Graduate School of Biomedical Sciences at Houston.;

  • 授予单位 The University of Texas Graduate School of Biomedical Sciences at Houston.;
  • 学科 Health Sciences Pharmacology.;Biophysics General.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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