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DSCAM regulates delamination of neurons in the developing midbrain

机译:DSCAM调节在发育中脑中的神经元的分层

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For normal neurogenesis and circuit formation, delamination of differentiating neurons from the proliferative zone must be precisely controlled; however, the regulatory mechanisms underlying cell attachment are poorly understood. Here, we show that Down syndrome cell adhesion molecule (DSCAM) controls neuronal delamination by local suppression of the RapGEF2–Rap1–N-cadherin cascade at the apical endfeet in the dorsal midbrain. Dscam transcripts were expressed in differentiating neurons, and DSCAM protein accumulated at the distal part of the apical endfeet. Cre- loxP –based neuronal labeling revealed that Dscam knockdown impaired endfeet detachment from ventricles. DSCAM associated with RapGEF2 to inactivate Rap1, whose activity is required for membrane localization of N-cadherin. Correspondingly, Dscam knockdown increased N-cadherin localization and ventricular attachment area at the endfeet. Furthermore, excessive endfeet attachment by Dscam knockdown was restored by co-knockdown of RapGEF2 or N-cadherin . Our findings shed light on the molecular mechanism that regulates a critical step in early neuronal development.
机译:对于正常的神经发生和电路形成,必须精确地控制来自增殖区的分化神经元的分层;然而,细胞附着的监管机制很差。在这里,我们表明唐氏综合细胞粘附分子(DSCAM)通过在背部中脑中的顶端末端的局部抑制通过局部抑制来控制神经元分层。 DSCAM转录物在分化神经元中表达,并且累积在顶端末端的远端部分处的DSCAM蛋白质。基于Crexp的神经元标记显示,DSCAM敲低损伤了肠胃脱落障碍。与Rapgef2相关的DSCAM灭活RAP1,其活性是N-Cadherin的膜定位所必需的。相应地,DSCAM敲低增加了末端的N-Cadherin定位和心室附着区域。此外,通过CONGGEF2或N-CDADHERIN的共同敲低来恢复DSCAM敲低的过度终端附着。我们的研究结果阐明了调节早期神经元发展的关键步骤的分子机制。

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