Olson Eric C, Kim Seonhee, Walsh Christopher A
Howard Hughes Medical Institute, Beth Israel Deaconess Medical Center, Department of Neurology, Program in Neuroscience, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Neurosci. 2006 Feb 8;26(6):1767-75. doi: 10.1523/JNEUROSCI.3000-05.2006.
Reelin and Disabled 1 (Dab1) are essential for positioning migrating neurons in the developing neocortex. Cell-autonomous RNA interference-mediated suppression of Dab1 in migrating neurons destined for layer 2/3 shifted the median position of these cells to deeper positions within the cortex. At the time of migration arrest [embryonic day 20 (E20) to E21], Dab1-suppressed cells were underrepresented in the upper approximately 40 microm of the cortex compared with controls, suggesting that Dab1 is essential for somal translocation through the cell-dense cortical plate. Closer examination of the morphology of Dab1-suppressed neurons at E20 revealed simplified leading processes that are less likely to contact the marginal zone (MZ), in which high levels of Reelin are expressed. Examination of Dab1-suppressed cells 3 d later (postnatal day 2) revealed simplified dendrites that are also less likely to contact the MZ. These data reveal a cell-autonomous role of Dab1 in dendritogenesis in the neocortex and suggest that remodeling of the leading process of a migrating neuron into a nascent dendrite by Reelin/Dab1 signaling plays an important role in cell positioning.
Reelin和Disabled 1(Dab1)对于发育中的新皮层中迁移神经元的定位至关重要。在注定迁移至第2/3层的迁移神经元中,通过细胞自主RNA干扰介导抑制Dab1,会使这些细胞的中位位置向皮层内更深的位置偏移。在迁移停止时(胚胎第20天(E20)至E21),与对照相比,Dab1抑制的细胞在皮层上方约40微米处的数量不足,这表明Dab1对于体细胞通过细胞密集的皮质板进行易位至关重要。对E20时Dab1抑制的神经元形态进行更仔细检查发现,其引导过程简化,与边缘区(MZ)接触的可能性较小,而边缘区中Reelin表达水平较高。3天后(出生后第2天)对Dab1抑制的细胞进行检查发现,其树突也简化了,与边缘区接触的可能性也较小。这些数据揭示了Dab1在新皮层树突形成中的细胞自主作用,并表明通过Reelin/Dab1信号传导将迁移神经元的引导过程重塑为新生树突在细胞定位中起重要作用。