Calahorro Fernando, Izquierdo Patricia G
Biological Sciences, University of Southampton, Life Sciences Building 85, Southampton, SO17 1BJ, UK.
Invert Neurosci. 2018 Mar 12;18(2):4. doi: 10.1007/s10158-018-0207-5.
Synapses are specialized contact sites that mediate information flow between neurons and their targets. Important physical interactions across the synapse are mediated by synaptic adhesion molecules. These adhesions regulate formation of synapses during development and play a role during mature synaptic function. Importantly, genes regulating synaptogenesis and axon regeneration are conserved across the animal phyla. Genetic screens in the nematode Caenorhabditis elegans have identified a number of molecules required for synapse patterning and assembly. C. elegans is able to survive even with its neuronal function severely compromised. This is in comparison with Drosophila and mice where increased complexity makes them less tolerant to impaired function. Although this fact may reflect differences in the function of the homologous proteins in the synapses between these organisms, the most likely interpretation is that many of these components are equally important, but not absolutely essential, for synaptic transmission to support the relatively undemanding life style of laboratory maintained C. elegans. Here, we review research on the major group of synaptic proteins, involved in the presynaptic machinery in C. elegans, showing a strong conservation between higher organisms and highlight how C. elegans can be used as an informative tool for dissecting synaptic components, based on a simple nervous system organization.
突触是介导神经元与其靶标之间信息流的特殊接触位点。突触间重要的物理相互作用由突触黏附分子介导。这些黏附分子在发育过程中调节突触的形成,并在成熟突触功能中发挥作用。重要的是,调节突触发生和轴突再生的基因在动物门中是保守的。对线虫秀丽隐杆线虫进行的遗传筛选已经鉴定出许多突触模式形成和组装所需的分子。即使其神经元功能严重受损,秀丽隐杆线虫仍能存活。相比之下,果蝇和小鼠由于其复杂性增加,对功能受损的耐受性较低。尽管这一事实可能反映了这些生物体突触中同源蛋白功能的差异,但最可能的解释是,许多这些成分对于突触传递同样重要,但并非绝对必需,以支持实验室饲养的秀丽隐杆线虫相对简单的生活方式。在这里,我们综述了关于秀丽隐杆线虫突触前机制中主要突触蛋白组的研究,展示了高等生物之间的高度保守性,并强调了基于简单的神经系统组织,秀丽隐杆线虫如何作为剖析突触成分的有用工具。