Iida Junko, Hirabayashi Susumu, Sato Yuji, Hata Yutaka
Department of Medical Biochemistry, Graduate School of Medicine, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo 113-8519, Japan.
Mol Cell Neurosci. 2004 Dec;27(4):497-508. doi: 10.1016/j.mcn.2004.08.006.
S-SCAM has a similar molecular organization to PSD-95. Both of them interact with a cell adhesion molecule, neuroligin. We previously reported that beta-catenin binds S-SCAM and recruits it to synapses. We have here examined using rat primary cultured neurons whether neuroligin recruits S-SCAM to synapses or S-SCAM determines the localization of neuroligin. Overexpressed neuroligin formed larger clusters under co-expression of S-SCAM but not of PSD-95. Overexpressed neuroligin blocked synaptic accumulation of PSD-95 but not of S-SCAM. S-SCAM mutant containing the neuroligin-binding region interfered with synaptic accumulation of neuroligin and PSD-95, whereas the similar mutant of PSD-95 had no effect. Biochemical studies revealed that neuroligin forms a ternary complex with S-SCAM and PSD-95 through manifold interactions. These findings imply that S-SCAM is tethered by beta-catenin to synapses and induces synaptic accumulation of neuroligin, which subsequently recruits PSD-95 to synapses.
S-SCAM与PSD-95具有相似的分子结构。它们都与一种细胞粘附分子——神经连接蛋白相互作用。我们之前报道过β-连环蛋白结合S-SCAM并将其招募至突触。我们在此使用大鼠原代培养神经元研究了神经连接蛋白是将S-SCAM招募至突触,还是S-SCAM决定神经连接蛋白的定位。在共表达S-SCAM而非PSD-95的情况下,过表达的神经连接蛋白形成了更大的簇。过表达的神经连接蛋白阻断了PSD-95的突触积累,但未阻断S-SCAM的突触积累。含有神经连接蛋白结合区域的S-SCAM突变体干扰了神经连接蛋白和PSD-95的突触积累,而PSD-95的类似突变体则没有影响。生化研究表明,神经连接蛋白通过多种相互作用与S-SCAM和PSD-95形成三元复合物。这些发现表明,S-SCAM被β-连环蛋白拴系在突触处,并诱导神经连接蛋白的突触积累,随后神经连接蛋白将PSD-95招募至突触。