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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Deleted in colorectal cancer binding netrin-1 mediates cell substrate adhesion and recruits Cdc42, Rac1, Pak1, and N-WASP into an intracellular signaling complex that promotes growth cone expansion.
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Deleted in colorectal cancer binding netrin-1 mediates cell substrate adhesion and recruits Cdc42, Rac1, Pak1, and N-WASP into an intracellular signaling complex that promotes growth cone expansion.

机译:在结直肠癌中缺失的结合蛋白netrin-1介导细胞底物粘附,并将Cdc42,Rac1,Pak1和N-WASP募集到细胞内信号传导复合物中,从而促进生长锥扩展。

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摘要

Extracellular cues direct axon extension by regulating growth cone morphology. The netrin-1 receptor deleted in colorectal cancer (DCC) is required for commissural axon extension to the floor plate in the embryonic spinal cord. Here we demonstrate that challenging embryonic rat spinal commissural neurons with netrin-1, either in solution or as a substrate, causes DCC-dependent increases in growth cone surface area and filopodia number, which we term growth cone expansion. We provide evidence that DCC influences growth cone morphology by at least two mechanisms. First, DCC mediates an adhesive interaction with substrate-bound netrin-1. Second, netrin-1 binding to DCC recruits an intracellular signaling complex that directs the organization of actin. We show that netrin-1-induced growth cone expansion requires Cdc42 (cell division cycle 42), Rac1 (Ras-related C3 botulinum toxin substrate 1), Pak1 (p21-activated kinase), and N-WASP (neuronal Wiskott-Aldrich syndrome protein) and that the application of netrin-1 rapidly activates Cdc42, Rac1, and Pak1. Furthermore, netrin-1 recruits Cdc42, Rac1, Pak1, and N-WASP into a complex with the intracellular domain of DCC and Nck1. These findings suggest that DCC influences growth cone morphology by acting both as a transmembrane bridge that links extracellular netrin-1 to the actin cytoskeleton and as the core of a protein complex that directs the organization of actin.
机译:细胞外提示通过调节生长锥形态来指导轴突延伸。大肠癌(DCC)中缺失的netrin-1受体是连合轴突延伸至胚胎脊髓底板所需的。在这里,我们证明具有netrin-1的具有挑战性的胚胎大鼠脊髓连合神经元在溶液中或作为底物,都会导致DCC依赖的生长锥表面积和丝状伪足数量增加,我们称之为生长锥扩张。我们提供的证据表明,DCC至少通过两种机制影响了生长锥的形态。首先,DCC介导与底物结合的netrin-1的粘合作用。其次,与DCC结合的netrin-1募集了指导肌动蛋白组织的细胞内信号传导复合物。我们显示netrin-1诱导的生长锥扩张需要Cdc42(细胞分裂周期42),Rac1(与Ras相关的C3肉毒杆菌毒素底物1),Pak1(p21激活的激酶)和N-WASP(神经性Wiskott-Aldrich综合征)蛋白)和netrin-1的应用迅速激活Cdc42,Rac1和Pak1。此外,netrin-1将Cdc42,Rac1,Pak1和N-WASP募集到具有DCC和Nck1的细胞内结构域的复合物中。这些发现表明,DCC通过充​​当跨膜桥(将胞外netrin-1与肌动蛋白细胞骨架相连)和作为指导肌动蛋白组织的蛋白质复合物的核心,从而影响生长锥的形态。

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