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AMPA receptors and their minions: auxiliary proteins in AMPA receptor trafficking

机译:AMPA受体及其成员:AMPA受体贩运中的辅助蛋白

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摘要

To correctly transfer information, neuronal networks need to continuously adjust their synaptic strength to extrinsic stimuli. This ability, termed synaptic plasticity, is at the heart of their function and is, thus, tightly regulated. In glutamatergic neurons, synaptic strength is controlled by the number and function of AMPA receptors at the postsynapse, which mediate most of the fast excitatory transmission in the central nervous system. Their trafficking to, at, and from the synapse, is, therefore, a key mechanism underlying synaptic plasticity. Intensive research over the last 20years has revealed the increasing importance of interacting proteins, which accompany AMPA receptors throughout their lifetime and help to refine the temporal and spatial modulation of their trafficking and function. In this review, we discuss the current knowledge about the roles of key partners in regulating AMPA receptor trafficking and focus especially on the movement between the intracellular, extrasynaptic, and synaptic pools. We examine their involvement not only in basal synaptic function, but also in Hebbian and homeostatic plasticity. Included in our review are well-established AMPA receptor interactants such as GRIP1 and PICK1, the classical auxiliary subunits TARP and CNIH, and the newest additions to AMPA receptor native complexes.
机译:为了正确转移信息,神经元网络需要连续地调节其突触强度以外部刺激。这种能力称为突触可塑性,是其功能的核心,因此是紧密调节的。在谷氨酸神经元中,突触强度受到后期AMPA受体的数量和功能来控制,其在中枢神经系统中介导大部分快速兴奋传播。因此,他们的贩运和康临时的贩运是突触可塑性的关键机制。过去20年的密集研究揭示了相互作用蛋白质的重要​​性,伴随着随着AMPA受体在整个寿命中伴随并有助于改善其贩运和功能的时间和空间调制。在这篇综述中,我们讨论了关于关键合作伙伴在调节AMPA受体贩运和关注的关键伙伴角色的知识,特别是在细胞内,额外,突触和突触池之间的运动。我们不仅在基础突触函数中审视他们的参与,也涉及Hebbian和稳态可塑性。我们的评论中包括完善的AMPA受体交流剂,如GRIP1和PICK1,古典辅助亚基TARP和CNIH,以及AMPA受体本地复合物的最新添加。

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