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Molecular organization of excitatory chemical synapses in the mammalian brain

机译:哺乳动物脑中兴奋性化学突触的分子组织

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Chemical synapses are highly specialized cell-cell junctions designed for efficient signaling between nerve cells. Distinct cytoskeletal matrices are assembled at either side of the synaptic junction. The pre-synaptic cytomatrix at the active zone (CAZ) defines and organizes the site of neurotransmitter release from presynaptic nerve terminals. The postsynaptic density (PSD) tethers neurotransmitter receptors and the postsynaptic signal transduction machinery. Recent progress in the identification and characterization of novel CAZ and PSD components has revealed new insights into the molecular organization and assembly mechanisms of the synaptic neurotransmission apparatus. On the presynaptic side, Bassoon and Piccolo, two related giant proteins, are crucially involved in scaffolding the CAZ. On the postsynaptic side, two families of multi-domain adaptor proteins, the MAGuKs (membrane-associated guanylate kinase homologs) and the ProSAP (proline-rich synapse-associated protein, also termed Shank) family members are thought to be major organizing molecules of the PSD.
机译:化学突触是高度专门化的细胞间连接,其设计用于神经细胞之间的有效信号传递。不同的细胞骨架基质装配在突触连接的任一侧。活跃区(CAZ)的突触前细胞基质定义并组织了神经递质从突触前神经末梢释放的部位。突触后密度(PSD)拴系神经递质受体和突触后信号转导机制。新型CAZ和PSD成分的鉴定和表征的最新进展揭示了对突触神经传递装置的分子组织和组装机制的新见解。在突触前,Bassoon和Piccolo是两个相关的巨蛋白,与CAZ的骨架密切相关。在突触后,两个多域衔接子蛋白家族,MAGuKs(膜相关鸟苷酸激酶同源物)和ProSAP(富含脯氨酸的突触相关蛋白,也称为Shank)家族成员被认为是主要的组织分子。 PSD。

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