Department of Cell and Developmental Biology, University College London , Gower Street, London WC1E 6BT , UK.
Biol Open. 2013 Mar 15;2(3):277-82. doi: 10.1242/bio.20133202. Epub 2013 Jan 17.
En route to the neocortex, interneurons migrate around and avoid the developing striatum. This is due to the chemorepulsive cues of class 3 semaphorins (Sema3A and Sema3F) acting through neuropilin and plexin co-receptors expressed in interneurons. In a recent genetic screen aimed at identifying novel components that may play a role in interneuron migration, we identified LIM-kinase 2 (Limk2), a kinase previously shown to be involved in cell movement and in Sema7A-PlexinC1 signalling. Here we show that Limk2 is differentially expressed in interneurons, with a higher expression in the subpallium compared to cortex, suggesting it may play a role in their migration through the subpallium. Chemotactic assays, carried out with small interfering RNAs (siRNAs), revealed that Limk2-siRNA transfected interneurons are less responsive to Sema3A, but respond to Sema3F. Lack of responsiveness to Sema3A resulted in their aberrant invasion of the developing striatum, as demonstrated in brain slice preparations and in in utero electroporated mouse embryos with the same siRNAs. Our results reveal a previously unknown role for Limk2 in interneuron migration and Sema3A signalling.
在前往新皮层的过程中,中间神经元迁移并避开发育中的纹状体。这是由于 3 类 semaphorin(Sema3A 和 Sema3F)通过神经元和丛蛋白共受体的趋化排斥信号发挥作用,这些共受体在中间神经元中表达。在最近的一项旨在鉴定可能在中间神经元迁移中发挥作用的新成分的遗传筛选中,我们鉴定了 LIM-kinase 2(Limk2),这是一种先前被证明参与细胞运动和 Sema7A-PlexinC1 信号转导的激酶。在这里,我们表明 Limk2 在中间神经元中差异表达,在 subpallium 中的表达高于皮层,这表明它可能在中间神经元通过 subpallium 的迁移中发挥作用。趋化性测定,用小干扰 RNA(siRNA)进行,表明 Limk2-siRNA 转染的中间神经元对 Sema3A 的反应性降低,但对 Sema3F 有反应。缺乏对 Sema3A 的反应性导致它们异常侵入发育中的纹状体,这在脑切片和用相同 siRNA 电穿孔的胎鼠中得到证实。我们的结果揭示了 Limk2 在中间神经元迁移和 Sema3A 信号转导中的一个以前未知的作用。