The establishment of functional neural circuits requires the guidance of axons in response to the actions of secreted and cell-surface molecules such as the semaphorins. Semaphorin 3E and its receptor PlexinD1 are expressed in the brain, but their functions are unknown. Here, we show that Sema3E/PlexinD1 signaling plays an important role in initial development of descending axon tracts in the forebrain. Early errors in axonal projections are reflected in behavioral deficits in Sema3E null mutant mice. Two distinct signaling mechanisms can be distinguished downstream of Sema3E. On corticofugal and striatonigral neurons expressing PlexinD1 but not Neuropilin-1, Sema3E acts as a repellent. In contrast, on subiculo-mammillary neurons coexpressing PlexinD1 and Neuropilin-1, Sema3E acts as an attractant. The extracellular domain of Neuropilin-1 is sufficient to convert repulsive signaling by PlexinD1 to attraction. Our data therefore reveal a "gating" function of neuropilins in semaphorin-plexin signaling during the assembly of forebrain neuronal circuits.
Gating of Sema3E/PlexinD1 signaling by neuropilin-1 switches axonal repulsion to attraction during brain development.
神经纤毛蛋白-1对Sema3E/PlexinD1信号的调控,使大脑发育过程中轴突的排斥作用转变为吸引作用
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作者:Chauvet Sophie, Cohen Samia, Yoshida Yutaka, Fekrane Lylia, Livet Jean, Gayet Odile, Segu Louis, Buhot Marie-Christine, Jessell Thomas M, Henderson Christopher E, Mann Fanny
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2007 | 起止号: | 2007 Dec 6; 56(5):807-22 |
| doi: | 10.1016/j.neuron.2007.10.019 | 研究方向: | 信号转导、发育与干细胞、神经科学 |
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