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Multiple Roles for Slits in the Control of Cell Migration in the Rostral Migratory Stream

机译:狭缝在鼻迁移流中控制细胞迁移的多重作用。

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摘要

The subventricular zone (SVZ) contains undifferentiated cells, which proliferate and generate olfactory bulb (OB) interneurons. Throughout life, these cells leave the SVZ and migrate along the rostral migratory stream (RMS) to the OB where they differentiate. In vitro, the septum and the choroid plexus (CP) secrete repulsive factors that could orient the migration of OB precursors. Slit1 and Slit2, two known chemorepellents for developing axons, can mimic this effect. We show here that the Slit receptors Robo2 and Robo3/Rig-1 are expressed in the SVZ and the RMS and that Slit1 and Slit2 are still present in the adult septum. Using Slit1/2-deficient mice, we found that Slit1 and Slit2 are responsible for both the septum and the CP repulsive activity in vitro. In adult mice lacking Slit1, small chains of SVZ-derived cells migrate caudally into the corpus callosum, supporting a role for Slits in orienting the migration of SVZ cells. Surprisingly, in adult mice, Slit1 was also expressed by type A and type C cells in the SVZ and RMS, suggesting that Slit1 could act cell autonomously. This hypothesis was tested using cultures of SVZ explants or isolated neurospheres from Slit1-/- or Slit1+/- mice. In both types of cultures, the migration of SVZ cells was altered in the absence of Slit1. This suggests that the regulation of the migration of OB precursors by Slit proteins is complex and not limited to repulsion.
机译:脑室下区域(SVZ)包含未分化的细胞,这些细胞增殖并产生嗅球(OB)中神经元。在整个生命周期中,这些细胞会离开SVZ,并沿着鼻尖迁移流(RMS)迁移到OB,并在那里分化。在体外,隔膜和脉络丛(CP)分泌排斥因子,这些因子可定向OB前体的迁移。 Slit1和Slit2,这是两个已知的产生轴突的化学驱除剂,可以模仿这种效果。我们在这里显示Slit受体Robo2和Robo3 / Rig-1在SVZ和RMS中表达,并且Slit1和Slit2仍然存在于成人隔垫中。使用Slit1 / 2缺陷小鼠,我们发现Slit1和Slit2既负责隔离膜又影响体外的CP排斥活性。在缺少Slit1的成年小鼠中,SVZ衍生细胞的小链尾状迁移到call体中,从而支持了Slits在定向SVZ细胞迁移中的作用。出人意料的是,在成年小鼠中,Slit1也通过SVZ和RMS中的A型和C型细胞表达,表明Slit1可以自主作用于细胞。使用SVZ外植体或Slit1-/-或Slit1 +/-小鼠的分离的神经球的培养物检验了该假设。在两种类型的培养物中,在没有Slit1的情况下SVZ细胞的迁移都发生了改变。这表明Slit蛋白对OB前体的迁移的调节是复杂的,并且不限于排斥。

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