Activation of kainate receptor GluK2–Neto2 complex

Shanti Pal Gangwar, Maria V. Yelshanskaya, Laura Y. Yen, Thomas P. Newton, Alexander I. Sobolevsky
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Abstract

Kainate receptors (KARs) are tetrameric, ligand-gated ion channels of the ionotropic glutamate receptor family that mediate excitatory neurotransmission and modulate neuronal circuits and synaptic plasticity during development of the central nervous system. KARs are implicated in psychiatric and neurological diseases and represent a target of therapeutic intervention. Native KARs form complexes with neuropilin and tolloid-like auxiliary subunits (Neto1 and Neto2), which modulate their function, trafficking and synaptic localization. Here we present structures of rat GluK2 KAR in the apo closed state and in the open states activated by agonist kainate and positive allosteric modulator BPAM344, solved in the presence and absence of Neto2 using time-resolved cryo-electron microscopy. While the binding of Neto2 does not change the behavior of individual or dimeric ligand-binding domains (LBDs) or the ion channel, it prevents tightening of the interface between two LBD dimers during activation and slows the kinetics of deactivation. Our structures illuminate the mechanism of KAR activation and its modulation by Neto2.

Abstract Image

kainate受体GluK2-Neto2复合物的激活
盐酸盐受体(KARs)是四聚体、配体门控离子通道的嗜离子性谷氨酸受体家族,介导兴奋性神经传递,调节中枢神经系统发育过程中的神经元回路和突触可塑性。KARs与精神和神经疾病有关,是治疗干预的目标。天然的KARs与神经肽和类脂质辅助亚基(Neto1和Neto2)形成复合物,调节其功能、运输和突触定位。在这里,我们展示了大鼠GluK2 KAR在载子封闭状态和在激动剂kainate和正变构调节剂BPAM344激活下的开放状态下的结构,并使用时间分辨冷冻电镜在Neto2存在和不存在的情况下进行了解析。虽然Neto2的结合不会改变单个或二聚体配体结合域(LBD)或离子通道的行为,但它可以防止激活过程中两个LBD二聚体之间的界面收紧,并减缓失活动力学。我们的结构阐明了Neto2对KAR激活及其调控的机制。
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