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Assembly of AMPA receptors: mechanisms and regulation

机译:AMPA受体组装:机制和监管

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AMPA receptors (AMPARs) play a critical role in excitatory glutamatergic neurotransmission. The number and subunit composition of AMPARs at synapses determines the dynamics of fast glutamatergic signalling. Functional AMPARs on the cell surface are tetramers. Thus tetrameric assembly of AMPARs represents a promising target for modulating AMPAR-mediated signalling in health and disease. Multiple structural domains within the receptor influence AMPAR assembly. In a proposed model for AMPAR assembly, the amino-terminal domain underlies the formation of a dimer pool. The transmembrane domain facilitates the formation and enhances the stability of the tetramer. The ligand-binding domain influences assembly through a process referred to as domain swapping'. We propose that this core AMPAR assembly process could be regulated by neuronal signals and speculate on possible mechanisms for such regulation.
机译:AMPA受体(AMPARs)在兴奋性谷氨酸胶质剂神经递质中发挥着关键作用。 突触Ampars的数量和亚基组合物决定了快速谷氨酸信号传导的动态。 细胞表面上的功能性Ampars是四聚体。 因此,AMPars的四聚体组装代表了用于调节健康和疾病中的AMPAR介导的信号传导的有希望的靶标。 受体内的多个结构域影响AMPAR组件。 在拟议的AMPAR组件模型中,氨基末端域下层池的形成。 跨膜结构域有利于形成并增强四聚体的稳定性。 配体绑定域通过称为域交换的过程影响组装。 我们建议该核心AMPAR装配过程可以由神经元信号调节,并推测这种调节的可能机制。

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