During development of the nervous system, growing axons rely on guidance molecules to direct axon pathfinding. A well-characterized family of guidance molecules are the membrane-associated ephrins, which together with their cognate Eph receptors, direct axon navigation in a contact-mediated fashion. InC. elegans, the ephrin-Eph signaling system is conserved and is best characterized for their roles in neuroblast migration during early embryogenesis. This study demonstrates a role for the C. elegans ephrin EFN-4 in axon guidance. We provide both genetic and biochemical evidence that is consistent with the C. elegans divergent L1 cell adhesion molecule LAD-2 acting as a non-canonical ephrin receptor to EFN-4 to promote axon guidance. We also show that EFN-4 probably functions as a diffusible factor because EFN-4 engineered to be soluble can promote LAD-2-mediated axon guidance. This study thus reveals a potential additional mechanism for ephrins in regulating axon guidance and expands the repertoire of receptors by which ephrins can signal.
EFN-4 functions in LAD-2-mediated axon guidance in Caenorhabditis elegans.
EFN-4 在秀丽隐杆线虫中 LAD-2 介导的轴突导向中发挥作用
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作者:Dong Bingyun, Moseley-Alldredge Melinda, Schwieterman Alicia A, Donelson Cory J, McMurry Jonathan L, Hudson Martin L, Chen Lihsia
| 期刊: | Development | 影响因子: | 3.600 |
| 时间: | 2016 | 起止号: | 2016 Apr 1; 143(7):1182-91 |
| doi: | 10.1242/dev.128934 | ||
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