Nakagawa Terunaga, Cheng Yifan, Sheng Morgan, Walz Thomas
The Picower Center for Learning and Memory, RIKEN-MIT Neuroscience Research Center, Howard Hughes Medical Institute, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Biol Chem. 2006 Feb;387(2):179-87. doi: 10.1515/BC.2006.024.
Most excitatory synaptic transmissions in the central nervous system are mediated by the neurotransmitter glutamate. Binding of glutamate released from the presynaptic membrane causes glutamate receptors in the postsynaptic membrane to open, which results in a transient depolarization of the postsynaptic membrane. The AMPA (alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid) subtype of glutamate receptors is responsible for the majority of excitatory postsynaptic currents and is thought to play a central role in synaptic plasticity. Because modulation of glutamate receptors is believed to be involved in the basic mechanism underlying information storage in the brain, the molecular architecture of native AMPA receptors (AMPA-Rs) is of great interest. Previously, we have shown that AMPA-Rs purified from the brain are tightly associated with members of the stargazin/TARP (transmembrane AMPA receptor regulatory protein) family of membrane proteins [Nakagawa et al., Nature 433 (2005), pp. 545-549]. Here, we present a three-dimensional (3D) density map of the hetero-tetrameric AMPA-R without associated stargazin/TARP proteins as determined by cryo-negative stain single-particle electron microscopy. In the absence of stargazin/TARP proteins, the density representing the transmembrane region of the AMPA-R particles is substantially smaller, corroborating our previous analysis that was based solely on projection images.
中枢神经系统中大多数兴奋性突触传递由神经递质谷氨酸介导。突触前膜释放的谷氨酸结合会导致突触后膜中的谷氨酸受体打开,从而引起突触后膜的瞬时去极化。谷氨酸受体的AMPA(α-氨基-3-羟基-5-甲基-4-异恶唑丙酸)亚型负责大部分兴奋性突触后电流,并被认为在突触可塑性中起核心作用。由于谷氨酸受体的调节被认为参与了大脑中信息存储的基本机制,天然AMPA受体(AMPA-Rs)的分子结构备受关注。此前,我们已经表明从大脑中纯化的AMPA-Rs与膜蛋白的stargazin/TARP(跨膜AMPA受体调节蛋白)家族成员紧密相关 [中川等人,《自然》433(2005年),第545 - 549页]。在此,我们展示了通过冷冻负染单颗粒电子显微镜测定的、不与stargazin/TARP蛋白相关的异源四聚体AMPA-R的三维(3D)密度图。在没有stargazin/TARP蛋白的情况下,代表AMPA-R颗粒跨膜区域的密度显著更小,这证实了我们之前仅基于投影图像的分析。