College of Science, Yanshan University, Qinhuangdao, China.
J Phys Chem B. 2013 Jul 25;117(29):8689-96. doi: 10.1021/jp402290t. Epub 2013 Jul 17.
AMPA receptor mediates the fast excitatory synaptic transmission in the central nervous system, and it is activated by the binding of glutamate that results in the opening of the transmembrane ion channel. In the present work, the thermodynamic method developed by our group was improved and then applied to identify the functionally key residues that regulate the glutamate-binding affinity of AMPA receptor. In our method, the key residues are identified as those whose perturbation largely changes the ligand binding free energy of the protein. It is found that besides the ligand binding sites, other residues distant from the binding cleft can also influence the glutamate binding affinity through a long-range allosteric regulation. These allosteric sites include the hinge region of the ligand binding cleft, the dimer interface of the ligand binding domain, the linkers between the ligand binding domain and the transmembrane domain, and the interface between the N-terminal domain and the ligand binding domain. Our calculation results are consistent with the available experimental data. The results are helpful for our understanding of the mechanism of long-range allosteric communication in the AMPA receptor and the mechanism of channel opening triggered by glutamate binding.
AMPA 受体介导中枢神经系统中的快速兴奋性突触传递,其被谷氨酸结合激活,导致跨膜离子通道打开。在本工作中,我们小组开发的热力学方法得到了改进,然后用于鉴定调节 AMPA 受体谷氨酸结合亲和力的功能关键残基。在我们的方法中,关键残基被鉴定为那些其扰动会极大改变蛋白质配体结合自由能的残基。研究发现,除了配体结合位点外,与结合裂隙距离较远的其他残基也可以通过远程变构调节影响谷氨酸的结合亲和力。这些变构位点包括配体结合裂隙的铰链区域、配体结合域的二聚体界面、配体结合域与跨膜域之间的连接子以及 N 端结构域与配体结合域之间的界面。我们的计算结果与现有的实验数据一致。这些结果有助于我们理解 AMPA 受体中远程变构通讯的机制以及谷氨酸结合触发通道开放的机制。