Architecture et Fonction des Macromolécules Biologiques (AFMB), CNRS/Universités Aix-Marseille, Campus Luminy, Marseille, France.
Chem Biol Interact. 2010 Sep 6;187(1-3):49-55. doi: 10.1016/j.cbi.2010.01.030. Epub 2010 Jan 25.
The neuroligins are postsynaptic cell adhesion proteins whose extracellular domain belongs to the alpha/beta-hydrolase fold family of proteins, a family characterized through the enzyme acetylcholinesterase (AChE) and other enzymes with various substrate specificities. Neuroligin associations with the pre-synaptic neurexins participate in synapse maturation and maintenance. Alternative splicing of the neuroligin and neurexin genes results in multiple isoforms and presumably regulation of activity, while mutations appear to be associated with autism spectrum disorders. The crystal structures of the extracellular, cell adhesion domain of three neuroligins (NL1, NL2 and NL4) revealed features that distinguish the neuroligins from their enzyme relatives and could not be predicted by homology modelling from an AChE template. The structures of NL1 and NL4 bound with a soluble beta-neurexin domain (Nrxbeta1) revealed the precise position and orientation of the bound Nrxbeta1 and the Ca(2+)-dependent interaction network at the complex interface. Herein we present an overview of the unbound and Nrxbeta1-bound neuroligin structures and compare them with structures of AChEs with and without a bound fasciculin partner. This study exemplifies how an alpha/beta-hydrolase fold domain tailored for catalysis varies to acquire adhesion properties, and defines three surface regions with distinctive locations and properties for homologous or heterologous partner association.
神经连接蛋白是突触后细胞黏附蛋白,其细胞外结构域属于α/β-水解酶折叠家族蛋白,该家族的特征酶为乙酰胆碱酯酶(AChE)和其他具有不同底物特异性的酶。神经连接蛋白与神经前突触蛋白的相互作用参与了突触的成熟和维持。神经连接蛋白和神经前突触蛋白基因的选择性剪接导致了多种同工型的产生,可能调节了其活性,而突变似乎与自闭症谱系障碍有关。三种神经连接蛋白(NL1、NL2 和 NL4)的细胞外黏附结构域的晶体结构揭示了一些特征,这些特征将神经连接蛋白与其酶相关蛋白区分开来,并且不能通过从 AChE 模板进行同源建模来预测。NL1 和 NL4 与可溶性神经前突触蛋白β结构域(Nrxbeta1)结合的结构揭示了结合的 Nrxbeta1 的精确位置和取向,以及复合物界面处的 Ca2+依赖性相互作用网络。本文概述了未结合和与 Nrxbeta1 结合的神经连接蛋白结构,并将其与结合或不结合 fasciculin 配体的 AChE 结构进行了比较。该研究示例说明了如何针对催化作用定制的α/β-水解酶折叠结构域发生变化以获得黏附特性,并定义了三个具有独特位置和特性的表面区域,用于同源或异源配体的相互作用。