Blacklaws Jake, Deska-Gauthier Dylan, Jones Christopher T, Petracca Yanina L, Liu Mingwei, Zhang Han, Fawcett James P, Glover Joel C, Lanuza Guillermo M, Zhang Ying
Department of Medical Neuroscience, Dalhousie University, Halifax, Nova Scotia, Canada, B3H 4R2.
Department of Mathematics & Statistics, Dalhousie University, Halifax, Nova Scotia, Canada, B3H 4R2.
Dev Neurobiol. 2015 Sep;75(9):1003-17. doi: 10.1002/dneu.22266. Epub 2015 Feb 18.
V3 spinal interneurons (INs) are a group of excitatory INs that play a crucial role in producing balanced and stable gaits in vertebrate animals. In the developing mouse spinal cord, V3 INs arise from the most ventral progenitor domain and form anatomically distinctive subpopulations in adult spinal cords. They are marked by the expression of transcription factor Sim1 postmitotically, but the function of Sim1 in V3 development remains unknown. Here, we used Sim1(Cre) ;tdTomato mice to trace the fate of V3 INs in a Sim1 mutant versus control genetic background during development. In Sim1 mutants, V3 INs are produced normally and maintain a similar position and organization as in wild types before E12.5. Further temporal analysis revealed that the V3 INs in the mutants failed to migrate properly to form V3 subgroups along the dorsoventral axis of the spinal cord. At birth, in the Sim1 mutant the number of V3 INs in the ventral subgroup was normal, but they were significantly reduced in the dorsal subgroup with a concomitant increase in the intermediate subgroup. Retrograde labeling at lumbar level revealed that loss of Sim1 led to a reduction in extension of contralateral axon projections both at E14.5 and P0 without affecting ipsilateral axon projections. These results demonstrate that Sim1 is essential for proper migration and the guidance of commissural axons of the spinal V3 INs.
V3脊髓中间神经元(INs)是一组兴奋性中间神经元,在脊椎动物产生平衡且稳定的步态中起关键作用。在发育中的小鼠脊髓中,V3中间神经元起源于最腹侧的祖细胞区域,并在成年脊髓中形成解剖学上独特的亚群。它们在有丝分裂后以转录因子Sim1的表达为标志,但Sim1在V3发育中的功能仍然未知。在这里,我们使用Sim1(Cre);tdTomato小鼠在发育过程中追踪Sim1突变体与对照遗传背景下V3中间神经元的命运。在Sim1突变体中,V3中间神经元正常产生,并在E12.5之前保持与野生型相似的位置和组织。进一步的时间分析表明,突变体中的V3中间神经元未能沿脊髓的背腹轴正确迁移以形成V3亚群。出生时,在Sim1突变体中,腹侧亚群的V3中间神经元数量正常,但背侧亚群中的数量显著减少,同时中间亚群增加。腰段逆行标记显示,Sim1的缺失导致E14.5和P0时对侧轴突投射的延伸减少,而不影响同侧轴突投射。这些结果表明,Sim1对于脊髓V3中间神经元的正确迁移和连合轴突的导向至关重要。