Bourne Yves, Marchot Pascale
Architecture et Fonction des Macromolécules Biologiques (AFMB), CNRS/Aix-Marseille Université, Campus Luminy - Case 932, 13288, Marseille cedex 09, France,
J Mol Neurosci. 2014 Jul;53(3):387-96. doi: 10.1007/s12031-014-0234-6. Epub 2014 Feb 6.
The neuroligins are cell adhesion proteins whose extracellular domain belongs to the α/β-hydrolase fold family of proteins, mainly containing enzymes and exemplified by acetylcholinesterase. The ectodomain of postsynaptic neuroligins interacts through a calcium ion with the ectodomain of presynaptic neurexins to form flexible trans-synaptic associations characterized by selectivity for neuroligin or neurexin subtypes. This heterophilic interaction, essential for synaptic differentiation, maturation, and maintenance, is regulated by gene selection, alternative mRNA splicing, and posttranslational modifications. Mutations leading to deficiencies in the expression, folding, maturation, and binding properties of either partner are associated with autism spectrum disorders. The currently available structural and functional data illustrate how these two families of cell adhesion molecules bridge the synaptic cleft to participate in synapse plasticity and support its dynamic nature. Neuroligin partners distinct from the neurexins, and which may undergo either trans or cis interaction, have also been described, and tridimensional structures of some of them are available. Our study emphasizes the partnership versatility of the neuroligin ectodomain associated with molecular flexibility and alternative binding sites, proposes homology models of the structurally non-characterized neuroligin partners, and exemplifies the large structural variability at the surface of the α/β-hydrolase fold subunit. This study also provides new insights into possible surface binding sites associated with non-catalytic properties of the acetylcholinesterase subunit.
神经连接蛋白是细胞黏附蛋白,其细胞外结构域属于α/β-水解酶折叠蛋白家族,主要包含酶类,乙酰胆碱酯酶就是其中的典型代表。突触后神经连接蛋白的胞外结构域通过钙离子与突触前神经配蛋白的胞外结构域相互作用,形成灵活的跨突触连接,这种连接具有对神经连接蛋白或神经配蛋白亚型的选择性。这种对突触分化、成熟和维持至关重要的异嗜性相互作用受基因选择、mRNA可变剪接和翻译后修饰的调控。导致任何一方表达、折叠、成熟和结合特性出现缺陷的突变都与自闭症谱系障碍有关。目前可得的结构和功能数据表明了这两类细胞黏附分子如何跨越突触间隙参与突触可塑性并支持其动态特性。也有文献描述了与神经配蛋白不同的神经连接蛋白结合伴侣,它们可能发生反式或顺式相互作用,并且其中一些的三维结构是已知的。我们的研究强调了神经连接蛋白胞外结构域与分子灵活性及可变结合位点相关的结合多样性,提出了结构未明确的神经连接蛋白结合伴侣的同源模型,并举例说明了α/β-水解酶折叠亚基表面的巨大结构变异性。这项研究还为与乙酰胆碱酯酶亚基非催化特性相关联的可能表面结合位点提供了新见解。