Architecture et Fonction des Macromolécules Biologiques, CNRS/Université d'Aix-Marseille, Campus Luminy, Marseille, France.
EMBO J. 2010 Jul 21;29(14):2461-71. doi: 10.1038/emboj.2010.123. Epub 2010 Jun 11.
The extracellular domains of neuroligins and neurexins interact through Ca(2+) to form flexible trans-synaptic associations characterized by selectivity for neuroligin or neurexin subtypes. This heterophilic interaction, essential for synaptic maturation and differentiation, is regulated by gene selection, alternative mRNA splicing and post-translational modifications. A new, 2.6 A-resolution crystal structure of a soluble neurexin-1beta-neuroligin-4 (Nrx1beta-NL4) complex permits a detailed description of the Ca(2+)-coordinated interface and unveils concerted positional rearrangements of several residues of NL4, not observed in neuroligin-1, associated with Nrx1beta binding. Surface plasmon resonance analysis of the binding of structure-guided Nrx1beta mutants towards NL4 and neuroligin-1 shows that flexibility of the Nrx1beta-binding site in NL4 is reflected in a greater dissociation constant of the complex and higher sensitivity to ionic strength and pH variations. Analysis of neuroligin mutants points to critical functions for two respective residues in neuroligin-1 and neuroligin-2 in governing the affinity of the complexes. Although neuroligin-1 and neuroligin-2 have pre-determined conformations that respectively promote and prevent Nrx1beta association, unique conformational reshaping of the NL4 surface is required to permit Nrx1beta association.
神经连接素和神经连接蛋白的细胞外结构域通过 Ca(2+) 相互作用,形成具有神经连接素或神经连接蛋白亚型选择性的灵活的突触间联系。这种异源相互作用对于突触的成熟和分化至关重要,受到基因选择、选择性剪接和翻译后修饰的调节。一个新的、分辨率为 2.6Å 的可溶性神经连接蛋白-1β-神经连接素-4(Nrx1β-NL4)复合物的晶体结构,允许对 Ca(2+) 协调的界面进行详细描述,并揭示了与 Nrx1β 结合相关的 NL4 中几个残基的协调位置重排,在神经连接素-1 中未观察到。结构导向的 Nrx1β 突变体与 NL4 和神经连接素-1 的结合的表面等离子体共振分析表明,NL4 中 Nrx1β 结合位点的灵活性反映在复合物的解离常数更大,对离子强度和 pH 变化更敏感。神经连接素突变体的分析指出,在控制复合物亲和力方面,神经连接素-1 和神经连接素-2 中的两个各自的残基具有关键的功能。尽管神经连接素-1 和神经连接素-2 具有分别促进和阻止 Nrx1β 结合的预定构象,但需要对 NL4 表面进行独特的构象重塑,以允许 Nrx1β 结合。