Thomas U, Kim E, Kuhlendahl S, Koh Y H, Gundelfinger E D, Sheng M, Garner C C, Budnik V
Department of Neurochemistry and Molecular Biology, Federal Institute for Neurobiology, Magdeburg, Germany.
Neuron. 1997 Oct;19(4):787-99. doi: 10.1016/s0896-6273(00)80961-7.
The cell adhesion molecule Fasciclin II (FASII) is involved in synapse development and plasticity. Here we provide genetic and biochemical evidence that proper localization of FASII at type I glutamatergic synapses of the Drosophila neuromuscular junction is mediated by binding between the intracellular tSXV bearing C-terminal tail of FASII and the PDZ1-2 domains of Discs-Large (DLG). Moreover, mutations in fasII and/or dlg have similar effects on presynaptic ultrastructure, suggesting their functional involvement in a common developmental pathway. DLG can directly mediate a biochemical complex and a macroscopic cluster of FASII and Shaker K+ channels in heterologous cells. These results indicate a central role for DLG in the structural organization and downstream signaling mechanisms of cell adhesion molecules and ion channels at synapses.
细胞黏附分子Fasciclin II(FASII)参与突触发育和可塑性。在此,我们提供遗传学和生物化学证据表明,FASII在果蝇神经肌肉接头I型谷氨酸能突触处的正确定位是由FASII含C末端尾巴的细胞内tSXV与盘状大蛋白(DLG)的PDZ1 - 2结构域之间的结合介导的。此外,fasII和/或dlg中的突变对突触前超微结构有相似的影响,表明它们在共同的发育途径中发挥功能作用。DLG可以在异源细胞中直接介导FASII和Shaker K +通道的生化复合物和宏观簇集。这些结果表明DLG在突触处细胞黏附分子和离子通道的结构组织及下游信号传导机制中起核心作用。