Sola Maria, Bavro Vassiliy N, Timmins Joanna, Franz Thomas, Ricard-Blum Sylvie, Schoehn Guy, Ruigrok Rob W H, Paarmann Ingo, Saiyed Taslimarif, O'Sullivan Gregory A, Schmitt Bertram, Betz Heinrich, Weissenhorn Winfried
European Molecular Biology Laboratory, Grenoble, France.
EMBO J. 2004 Jul 7;23(13):2510-9. doi: 10.1038/sj.emboj.7600256. Epub 2004 Jun 17.
Gephyrin is a bi-functional modular protein involved in molybdenum cofactor biosynthesis and in postsynaptic clustering of inhibitory glycine receptors (GlyRs). Here, we show that full-length gephyrin is a trimer and that its proteolysis in vitro causes the spontaneous dimerization of its C-terminal region (gephyrin-E), which binds a GlyR beta-subunit-derived peptide with high and low affinity. The crystal structure of the tetra-domain gephyrin-E in complex with the beta-peptide bound to domain IV indicates how membrane-embedded GlyRs may interact with subsynaptic gephyrin. In vitro, trimeric full-length gephyrin forms a network upon lowering the pH, and this process can be reversed to produce stable full-length dimeric gephyrin. Our data suggest a mechanism by which induced conformational transitions of trimeric gephyrin may generate a reversible postsynaptic scaffold for GlyR recruitment, which allows for dynamic receptor movement in and out of postsynaptic GlyR clusters, and thus for synaptic plasticity.
桥连蛋白是一种双功能模块化蛋白,参与钼辅因子生物合成以及抑制性甘氨酸受体(GlyRs)的突触后聚集。在此,我们表明全长桥连蛋白是三聚体,其在体外的蛋白水解导致其C末端区域(桥连蛋白-E)自发二聚化,该区域以高亲和力和低亲和力结合GlyRβ亚基衍生肽。与结合到结构域IV的β肽复合的四结构域桥连蛋白-E的晶体结构表明膜嵌入的GlyRs可能如何与突触下桥连蛋白相互作用。在体外,三聚体全长桥连蛋白在降低pH时形成网络,并且该过程可以逆转以产生稳定的全长二聚体桥连蛋白。我们的数据提出了一种机制,通过该机制三聚体桥连蛋白的诱导构象转变可能产生用于GlyR募集的可逆突触后支架,这允许受体在突触后GlyR簇中动态进出,从而实现突触可塑性。