Allam Sushmita L, Bouteiller Jean-Marie C, Hu Eric, Greget Renaud, Ambert Nicolas, Bischoff Serge, Baudry Michel, Berger Theodore W
Department of Biomedical Engineering, University of Southern California, 1042 Downey Way, DRB Building, Los Angeles, CA 90089-111, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:1374-7. doi: 10.1109/EMBC.2012.6346194.
In this paper we study the effects of the location of ionotropic receptors, especially AMPA and NMDA receptors, on their function at excitatory glutamatergic synapses. As few computational models only allow to evaluate the influence of receptor location on state transition and receptor dynamics, we present an elaborate computational model of a glutamatergic synapse that takes into account detailed parametric models of ionotropic receptors along with glutamate diffusion within the synaptic cleft. Our simulation results underscore the importance of the wide spread distribution of AMPA receptors which is required to avoid massive desensitization of these receptors following a single glutamate release event while NMDA receptor location is potentially optimal relative to the glutamate release site thus, emphasizing the contribution of location dependent effects of the two major ionotropic receptors to synaptic efficacy.
在本文中,我们研究离子型受体,特别是AMPA和NMDA受体的位置对其在兴奋性谷氨酸能突触处功能的影响。由于很少有计算模型仅允许评估受体位置对状态转换和受体动力学的影响,我们提出了一个详细的谷氨酸能突触计算模型,该模型考虑了离子型受体的详细参数模型以及突触间隙内的谷氨酸扩散。我们的模拟结果强调了AMPA受体广泛分布的重要性,这是避免这些受体在单个谷氨酸释放事件后发生大量脱敏所必需的,而NMDA受体的位置相对于谷氨酸释放位点可能是最佳的,因此,强调了两种主要离子型受体的位置依赖性效应对突触效能的贡献。