首页> 美国卫生研究院文献>eNeuro >Crucial Role of Rapgef2 and Rapgef6 a Family of Guanine Nucleotide Exchange Factors for Rap1 Small GTPase in Formation of Apical Surface Adherens Junctions and Neural Progenitor Development in the Mouse Cerebral Cortex
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Crucial Role of Rapgef2 and Rapgef6 a Family of Guanine Nucleotide Exchange Factors for Rap1 Small GTPase in Formation of Apical Surface Adherens Junctions and Neural Progenitor Development in the Mouse Cerebral Cortex

机译:Rapgef2和Rapgef6Rap1小GTPase的鸟嘌呤核苷酸交换因子家族在小鼠大脑皮层顶表面粘附连接和神经祖细胞发育中的关键作用。

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摘要

Cerebral neocortex development in mammals requires highly orchestrated events involving proliferation, differentiation, and migration of neural progenitors and neurons. Rapgef2 and Rapgef6 constitute a unique family of guanine nucleotide exchange factors for Rap1 small GTPase, which is known to play crucial roles in migration of postmitotic neurons. We previously reported that conditional knockout of Rapgef2 in dorsal telencephalon (Rapgef2-cKO) resulted in the formation of an ectopic cortical mass (ECM) resembling that of subcortical band heterotopia. Here we show that double knockout of Rapgef6 in Rapgef2-cKO mice (Rapgef2/6-dKO) results in marked enlargement of the ECM. While Rapgef2-cKO affects late-born neurons only, Rapgef2/6-dKO affects both early-born and late-born neurons. The Rapgef2-cKO cortex at embryonic day (E) 15.5, and the Rapgef2/6-dKO cortex at E13.5 and E15.5 show disruption of the adherens junctions (AJs) on the apical surface, detachment of radial glial cells (RGCs) from the apical surface and disorganization of the radial glial fiber system, which are accompanied by aberrant distribution of RGCs and intermediate progenitors, normally located in the ventricular zone and the subventricular zone, respectively, over the entire cerebral cortex. Moreover, intrauterine transduction of Cre recombinase into the Rapgef2flox/flox brains also results in the apical surface AJ disruption and the RGC detachment from the apical surface, both of which are effectively suppressed by cotransduction of the constitutively active Rap1 mutant Rap1G12V. These results demonstrate a cell-autonomous role of the Rapgef2/6-Rap1 pathway in maintaining the apical surface AJ structures, which is necessary for the proper development of neural progenitor cells.
机译:哺乳动物的大脑新皮质发育需要高度协调的事件,包括神经祖细胞和神经元的增殖,分化和迁移。 Rapgef2和Rapgef6构成Rap1小GTP酶的独特的鸟嘌呤核苷酸交换因子家族,已知在有丝分裂后神经元的迁移中起关键作用。我们以前曾报道过,有条件的敲除背脑小脑中的Rapgef2(Rapgef2-cKO)导致异位皮层肿块(ECM)的形成,类似于皮层下带异位症。在这里,我们显示Rapgef2-cKO小鼠(Rapgef2 / 6-dKO)中Rapgef6的双重敲除导致ECM明显增大。虽然Rapgef2-cKO仅影响晚期出生的神经元,但Rapgef2 / 6-dKO却影响早期出生和晚期的神经元。胚胎第(E)15.5天的Rapgef2-cKO皮层,以及E13.5和E15.5的Rapgef2 / 6-dKO皮层显示了根尖表面粘附连接(AJs)的破坏,放射状神经胶质细胞(RGCs)脱落)和the骨神经胶质纤维系统紊乱,伴有RGC和中间祖细胞的异常分布,通常分别位于整个大脑皮层的心室区和心室下区。此外,宫腔内Cre重组酶向Rapgef2 flox / flox 大脑的转导也导致了根尖表面AJ破坏和RGC从根尖表面脱离,两者均通过组成性活性的共转导得到有效抑制。 Rap1突变体Rap1 G12V 。这些结果证明了Rapgef2 / 6-Rap1途径在维持根尖表面AJ结构中的细胞自治作用,这对于神经祖细胞的正常发育是必需的。

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