AMPA受体
小脑
神经科学
谷氨酸的
化学
传入的
受体
神经传递
细胞生物学
谷氨酸受体
突触
钙显像
生物物理学
生物
小脑皮质
浦肯野细胞
神经递质
哺乳动物大脑
作者
Alexander M. Scrutton,Nayanika Sengupta,Josip Ivica,Imogen Stockwell,Sew‐Yeu Peak‐Chew,B.K. Singh,K. Suzuki,Veronica T. Chang,Stephen H. McLaughlin,James Krieger,A.R. Aricescu,Ingo H. Greger
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-12-11
卷期号:: eaeb3577-eaeb3577
被引量:1
标识
DOI:10.1126/science.aeb3577
摘要
AMPA receptors (AMPARs) are multimodal transducers of glutamatergic signals throughout the brain. Their diversity is exemplified in the cerebellum; at afferent synapses, AMPARs mediate high-frequency excitation, whereas in Bergmann glia (BG) they support calcium transients that modulate synaptic transmission. This spectrum arises from different combinations of core subunits (GluA1-4), auxiliary proteins, and post-transcriptional modifications. Here, using mass-spectrometry, cryo-EM, and electrophysiology, we characterize major cerebellar AMPARs in pig: calcium-impermeable GluA2/A4 heteromers with four TARP subunits, mainly neuronal in origin, and BG-specific calcium-permeable GluA1/A4 heteromers containing two Type-2 TARPs. We also showed that GluA4 receptors consistently exhibit compact N-terminal domains that promote their synaptic delivery. Our study defines the organizational principles of mammalian cerebellar AMPAR complexes and reveals how different receptor subtypes support cell-type specific functions.
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