Bridging the Synaptic Gap: Neuroligins and Neurexin I in Apis mellifera
Open Access
- 31 October 2008
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 3 (10) , e3542
- https://doi.org/10.1371/journal.pone.0003542
Abstract
Vertebrate studies show neuroligins and neurexins are binding partners in a trans-synaptic cell adhesion complex, implicated in human autism and mental retardation disorders. Here we report a genetic analysis of homologous proteins in the honey bee. As in humans, the honeybee has five large (31–246 kb, up to 12 exons each) neuroligin genes, three of which are tightly clustered. RNA analysis of the neuroligin-3 gene reveals five alternatively spliced transcripts, generated through alternative use of exons encoding the cholinesterase-like domain. Whereas vertebrates have three neurexins the bee has just one gene named neurexin I (400 kb, 28 exons). However alternative isoforms of bee neurexin I are generated by differential use of 12 splice sites, mostly located in regions encoding LNS subdomains. Some of the splice variants of bee neurexin I resemble the vertebrate α- and β-neurexins, albeit in vertebrates these forms are generated by alternative promoters. Novel splicing variations in the 3′ region generate transcripts encoding alternative trans-membrane and PDZ domains. Another 3′ splicing variation predicts soluble neurexin I isoforms. Neurexin I and neuroligin expression was found in brain tissue, with expression present throughout development, and in most cases significantly up-regulated in adults. Transcripts of neurexin I and one neuroligin tested were abundant in mushroom bodies, a higher order processing centre in the bee brain. We show neuroligins and neurexins comprise a highly conserved molecular system with likely similar functional roles in insects as vertebrates, and with scope in the honeybee to generate substantial functional diversity through alternative splicing. Our study provides important prerequisite data for using the bee as a model for vertebrate synaptic development.Keywords
This publication has 113 references indexed in Scilit:
- Evolutionary expansion and anatomical specialization of synapse proteome complexityNature Neuroscience, 2008
- Structural Analysis of the Synaptic Protein Neuroligin and Its β-Neurexin Complex: Determinants for Folding and Cell AdhesionNeuron, 2007
- Crucial Role of Drosophila Neurexin in Proper Active Zone Apposition to Postsynaptic Densities, Synaptic Growth, and Synaptic TransmissionNeuron, 2007
- Synaptic Arrangement of the Neuroligin/β-Neurexin Complex Revealed by X-Ray and Neutron ScatteringStructure, 2007
- Neurexin–neuroligin signaling in synapse developmentCurrent Opinion in Neurobiology, 2007
- Eph receptor and ephrin signaling in developing and adult brain of the honeybee (Apis mellifera)Developmental Neurobiology, 2007
- Insights into social insects from the genome of the honeybee Apis melliferaNature, 2006
- Synaptic adhesion moleculesCurrent Opinion in Cell Biology, 2003
- Mutations of the X-linked genes encoding neuroligins NLGN3 and NLGN4 are associated with autismNature Genetics, 2003
- T-coffee: a novel method for fast and accurate multiple sequence alignment 1 1Edited by J. ThorntonJournal of Molecular Biology, 2000