Ascl1 promotes tangential migration and confines migratory routes by induction of Ephb2 in the telencephalon

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作者
Yuan-Hsuan Liu
Jin-Wu Tsai
Jia-Long Chen
Wan-Shan Yang
Pei-Ching Chang
Pei-Lin Cheng
David L. Turner
Yuchio Yanagawa
Tsu-Wei Wang
Jenn-Yah Yu
机构
[1] National Yang-Ming University,Department of Life Sciences and Institute of Genome Sciences
[2] Institute of Brain Science,Molecular and Behavioral Neuroscience Institute and Department of Biological Chemistry
[3] National Yang-Ming University,Department of Genetic and Behavioral Neuroscience
[4] Brain Research Center,Department of Life Science
[5] National Yang-Ming University,undefined
[6] Institute of Microbiology and Immunology,undefined
[7] National Yang-Ming University,undefined
[8] Institute of Molecular Biology,undefined
[9] Academia Sinica,undefined
[10] University of Michigan,undefined
[11] Gunma University Graduate School of Medicine,undefined
[12] National Taiwan Normal University,undefined
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摘要
During development, cortical interneurons generated from the ventral telencephalon migrate tangentially into the dorsal telencephalon. Although Achaete-scute family bHLH transcription factor 1 (Ascl1) plays important roles in the developing telencephalon, whether Ascl1 regulates tangential migration remains unclear. Here, we found that Ascl1 promoted tangential migration along the ventricular zone/subventricular zone (VZ/SVZ) and intermediate zone (IZ) of the dorsal telencephalon. Distal-less homeobox 2 (Dlx2) acted downstream of Ascl1 in promoting tangential migration along the VZ/SVZ but not IZ. We further identified Eph receptor B2 (Ephb2) as a direct target of Ascl1. Knockdown of EphB2 disrupted the separation of the VZ/SVZ and IZ migratory routes. Ephrin-A5, a ligand of EphB2, was sufficient to repel both Ascl1-expressing cells in vitro and tangentially migrating cortical interneurons in vivo. Together, our results demonstrate that Ascl1 induces expression of Dlx2 and Ephb2 to maintain distinct tangential migratory routes in the dorsal telencephalon.
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