首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Interactions among Positions in the Third and Fourth Membrane-associated Domains at the Intersubunit Interface of the N-Methyl-d-aspartate Receptor Forming Sites of Alcohol Action
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Interactions among Positions in the Third and Fourth Membrane-associated Domains at the Intersubunit Interface of the N-Methyl-d-aspartate Receptor Forming Sites of Alcohol Action

机译:酒精作用的N-甲基-d-天冬氨酸受体形成位点的亚基界面处的第三和第四膜相关域中的位置之间的相互作用。

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摘要

The N-methyl-d-aspartate (NMDA) glutamate receptor is a major target of ethanol in the brain. Previous studies have identified positions in the third and fourth membrane-associated (M) domains of the NMDA receptor GluN1 and GluN2A subunits that influence alcohol sensitivity. The predicted structure of the NMDA receptor, based on that of the related GluA2 subunit, indicates a close apposition of the alcohol-sensitive positions in M3 and M4 between the two subunit types. We tested the hypothesis that these positions interact to regulate receptor kinetics and ethanol sensitivity by using dual substitution mutants. In single-substitution mutants, we found that a position in both subunits adjacent to one previously identified, GluN1(Gly-638) and GluN2A(Phe-636), can strongly regulate ethanol sensitivity. Significant interactions affecting ethanol inhibition and receptor deactivation were observed at four pairs of positions in GluN1/GluN2A: Gly-638/Met-823, Phe-639/Leu-824, Met-818/Phe-636, and Leu-819/Phe-637; the latter pair also interacted with respect to desensitization. Two interactions involved a position in M4 of both subunits, GluN1(Met-818) and GluN2A(Leu-824), that does not by itself alter ethanol sensitivity, whereas a previously identified ethanol-sensitive position, GluN2A(Ala-825), did not unequivocally interact with any other position tested. These results also indicate a shift by one position of the predicted alignment of the GluN1 M4 domain. These findings have allowed for the refinement of the NMDA receptor M domain structure, demonstrate that this region can influence apparent agonist affinity, and support the existence of four sites of alcohol action on the NMDA receptor, each consisting of five amino acids at the M3-M4 domain intersubunit interfaces.
机译:N-甲基-d-天冬氨酸(NMDA)谷氨酸受体是大脑中乙醇的主要靶标。以前的研究已经确定了在NMDA受体GluN1和GluN2A亚基的第三和第四膜相关(M)域中的位置,这些位置会影响酒精敏感性。基于相关GluA2亚基的结构,NMDA受体的预测结构表明两种亚基类型之间M3和M4中的醇敏感位置紧密并列。我们测试了这样的假设,即这些位置通过使用双取代突变体相互作用来调节受体动力学和乙醇敏感性。在单取代突变体中,我们发现两个亚基中与先前鉴定的一个GluN1(Gly-638)和GluN2A(Phe-636)相邻的位置可以强烈调节乙醇敏感性。在GluN1 / GluN2A中的四对位置上观察到了影响乙醇抑制和受体失活的重要相互作用:Gly-638 / Met-823,Phe-639 / Leu-824,Met-818 / Phe-636和Leu-819 / Phe -637;后一对在脱敏方面也相互作用。两种相互作用涉及两个亚基GluN1(Met-818)和GluN2A(Leu-824)在M4中的位置,其本身不会改变乙醇敏感性,而先前确定的对乙醇敏感的位置GluN2A(Ala-825),没有明确地与其他测试职位互动。这些结果还表明,GluN1 M4结构域的预测比对错位了一个位置。这些发现可以改善NMDA受体M结构域的结构,证明该区域可以影响表观激动剂亲和力,并支持在NMDA受体上存在四个醇作用位点,每个位点在M3-处包含五个氨基酸M4域子单元间接口。

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