Elias Guillermo M, Funke Lars, Stein Valentin, Grant Seth G, Bredt David S, Nicoll Roger A
Department of Cellular and Molecular Pharmacology, University of California, San Francisco, San Francisco, California 94143, USA.
Neuron. 2006 Oct 19;52(2):307-20. doi: 10.1016/j.neuron.2006.09.012.
Trafficking of AMPA receptors (AMPA-Rs) to and from synapses controls the strength of excitatory synaptic transmission. However, proteins that cluster AMPA-Rs at synapses remain poorly understood. Here we show that PSD-95-like membrane-associated guanylate kinases (PSD-MAGUKs) mediate this synaptic targeting, and we uncover a remarkable functional redundancy within this protein family. By manipulating endogenous neuronal PSD-MAGUK levels, we find that both PSD-95 and PSD-93 independently mediate AMPA-R targeting at mature synapses. We also reveal unanticipated synapse heterogeneity as loss of either PSD-95 or PSD-93 silences largely nonoverlapping populations of excitatory synapses. In adult PSD-95 and PSD-93 double knockout animals, SAP-102 is upregulated and compensates for the loss of synaptic AMPA-Rs. At immature synapses, PSD-95 and PSD-93 play little role in synaptic AMPA-R clustering; instead, SAP-102 dominates. These studies establish a PSD-MAGUK-specific regulation of AMPA-R synaptic expression that establishes and maintains glutamatergic synaptic transmission in the mammalian central nervous system.
AMPA受体(AMPA-Rs)在突触间的转运调控着兴奋性突触传递的强度。然而,在突触处使AMPA-Rs聚集的蛋白质仍未被充分了解。在此,我们表明类PSD-95膜相关鸟苷酸激酶(PSD-MAGUKs)介导了这种突触靶向作用,并且我们揭示了该蛋白家族内显著的功能冗余。通过操控内源性神经元PSD-MAGUK水平,我们发现PSD-95和PSD-93均可独立介导成熟突触处的AMPA-R靶向作用。我们还揭示了意料之外的突触异质性,因为PSD-95或PSD-93的缺失会使大量非重叠的兴奋性突触群体沉默。在成年PSD-95和PSD-93双敲除动物中,SAP-102上调并补偿了突触AMPA-Rs的缺失。在未成熟突触中,PSD-95和PSD-93在突触AMPA-R聚集方面作用甚微;相反,SAP-102起主导作用。这些研究确立了PSD-MAGUK对AMPA-R突触表达的特异性调控,这种调控在哺乳动物中枢神经系统中建立并维持着谷氨酸能突触传递。