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The atypical guanine nucleotide exchange factor Dock4 regulates neurite differentiation through modulation of Rac1 GTPase and actin dynamics.非典型鸟嘌呤核苷酸交换因子 Dock4 通过调节 Rac1 GTP 酶和肌动蛋白动力学来调节神经突分化。
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2
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4
Dock6, a Dock-C subfamily guanine nucleotide exchanger, has the dual specificity for Rac1 and Cdc42 and regulates neurite outgrowth.Dock6是一种Dock-C亚家族鸟嘌呤核苷酸交换因子,对Rac1和Cdc42具有双重特异性,并调节神经突生长。
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Two Autism/Dyslexia Linked Variations of Disrupt the Gene Function on Rac1/Rap1 Activation, Neurite Outgrowth, and Synapse Development.与自闭症/阅读障碍相关的两种变异破坏了Rac1/Rap1激活、神经突生长和突触发育中的基因功能。
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The Human Rho-GEF trio and its target GTPase RhoG are involved in the NGF pathway, leading to neurite outgrowth.人类Rho鸟嘌呤核苷酸交换因子三聚体及其靶标GTP酶RhoG参与神经生长因子(NGF)通路,从而导致神经突生长。
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Roles of Rac1-Dependent Intrinsic Forgetting in Memory-Related Brain Disorders: Demon or Angel.Rac1 依赖性固有遗忘在与记忆相关的脑疾病中的作用:是魔鬼还是天使。
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Direct targeting of DOCK4 by miRNA-181d in oxygen-glucose deprivation/reoxygenation-mediated neuronal injury.miRNA-181d 通过直接靶向 DOCK4 介导氧葡萄糖剥夺/复氧诱导的神经元损伤。
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DOCK4 as a Potential Biomarker Associated with Immune Infiltration in Stomach Adenocarcinoma: A Database Analysis.DOCK4作为与胃腺癌免疫浸润相关的潜在生物标志物:一项数据库分析
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Deficiency of Autism-Related Gene Dock4 Leads to Impaired Spatial Memory and Hippocampal Function in Mice at Late Middle Age.自闭症相关基因Dock4的缺失导致中年后期小鼠空间记忆和海马功能受损。
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本文引用的文献

1
Rac GEF Dock4 interacts with cortactin to regulate dendritic spine formation.Rac GEF Dock4 通过与桩蛋白相互作用来调节树突棘形成。
Mol Biol Cell. 2013 May;24(10):1602-13. doi: 10.1091/mbc.E12-11-0782. Epub 2013 Mar 27.
2
A review of the evidence for the canonical Wnt pathway in autism spectrum disorders.自闭症谱系障碍中经典 Wnt 通路证据的综述。
Mol Autism. 2012 Oct 19;3(1):10. doi: 10.1186/2040-2392-3-10.
3
A vitamin for the brain.大脑的维生素。
Trends Neurosci. 2012 Dec;35(12):733-41. doi: 10.1016/j.tins.2012.08.005. Epub 2012 Sep 6.
4
DOCK7 interacts with TACC3 to regulate interkinetic nuclear migration and cortical neurogenesis.DOCK7 与 TACC3 相互作用,调节核周运动和皮质神经发生。
Nat Neurosci. 2012 Sep;15(9):1201-10. doi: 10.1038/nn.3171. Epub 2012 Jul 29.
5
Dock3 stimulates axonal outgrowth via GSK-3β-mediated microtubule assembly.Dock3 通过 GSK-3β 介导的微管组装促进轴突生长。
J Neurosci. 2012 Jan 4;32(1):264-74. doi: 10.1523/JNEUROSCI.4884-11.2012.
6
α2-chimaerin controls neuronal migration and functioning of the cerebral cortex through CRMP-2.α2-奇美拉通过 CRMP-2 控制神经元迁移和大脑皮层的功能。
Nat Neurosci. 2011 Dec 4;15(1):39-47. doi: 10.1038/nn.2972.
7
The RhoG/ELMO1/Dock180 signaling module is required for spine morphogenesis in hippocampal neurons.RhoG/ELMO1/Dock180 信号模块对于海马神经元的脊柱形态发生是必需的。
J Biol Chem. 2011 Oct 28;286(43):37615-24. doi: 10.1074/jbc.M111.268029. Epub 2011 Sep 7.
8
DOCK4 and CEACAM21 as novel schizophrenia candidate genes in the Jewish population.DOCK4 和 CEACAM21 作为犹太人群体中新的精神分裂症候选基因。
Int J Neuropsychopharmacol. 2012 May;15(4):459-69. doi: 10.1017/S1461145711000903. Epub 2011 Jun 20.
9
The DOCK protein sponge binds to ELMO and functions in Drosophila embryonic CNS development.DOCK 蛋白海绵与 ELMO 结合,并在果蝇胚胎中枢神经系统发育中发挥作用。
PLoS One. 2011 Jan 25;6(1):e16120. doi: 10.1371/journal.pone.0016120.
10
A theoretical molecular network for dyslexia: integrating available genetic findings.阅读障碍的理论分子网络:整合现有遗传研究结果。
Mol Psychiatry. 2011 Apr;16(4):365-82. doi: 10.1038/mp.2010.105. Epub 2010 Oct 19.

非典型鸟嘌呤核苷酸交换因子 Dock4 通过调节 Rac1 GTP 酶和肌动蛋白动力学来调节神经突分化。

The atypical guanine nucleotide exchange factor Dock4 regulates neurite differentiation through modulation of Rac1 GTPase and actin dynamics.

机构信息

JNU-HKUST, Joint Laboratory for Neuroscience and Innovative Drug Research, Jinan University, Guangzhou 510632, Guangdong, China.

出版信息

J Biol Chem. 2013 Jul 5;288(27):20034-45. doi: 10.1074/jbc.M113.458612. Epub 2013 May 17.

DOI:10.1074/jbc.M113.458612
PMID:23720743
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3707701/
Abstract

Precise regulation of neurite growth and differentiation determines accurate formation of synaptic connections, whose disruptions are frequently associated with neurological disorders. Dedicator of cytokinesis 4 (Dock4), an atypical guanine nucleotide exchange factor for Rac1, is found to be associated with neuropsychiatric diseases, including autism and schizophrenia. Nonetheless, the neuronal function of Dock4 is only beginning to be understood. Using mouse neuroblastoma (Neuro-2a) cells as a model, this study identifies that Dock4 is critical for neurite differentiation and extension. This regulation is through activation of Rac1 and modulation of the dynamics of actin-enriched protrusions on the neurites. In cultured hippocampal neurons, Dock4 regulates the establishment of the axon-dendrite polarity and the arborization of dendrites, two critical processes during neural differentiation. Importantly, a microdeletion Dock4 mutant linked to autism and dyslexia that lacks the GEF domain leads to defective neurite outgrowth and neuronal polarization. Further analysis reveals that the SH3 domain-mediated interaction of Dock4 is required for its activity toward neurite differentiation, whereas its proline-rich C terminus is not essential for this regulation. Together, our findings reveal an important role of Dock4 for neurite differentiation during early neuronal development.

摘要

精确调节神经突的生长和分化决定了突触连接的准确形成,而突触连接的破坏常常与神经紊乱有关。胞质分裂促进因子 4(Dock4)是 Rac1 的一种非典型鸟嘌呤核苷酸交换因子,与神经精神疾病有关,包括自闭症和精神分裂症。尽管如此,Dock4 的神经元功能才刚刚开始被理解。本研究使用小鼠神经母细胞瘤(Neuro-2a)细胞作为模型,发现 Dock4 对于神经突的分化和延伸至关重要。这种调节是通过激活 Rac1 和调节神经突上富含肌动蛋白的突起的动态来实现的。在培养的海马神经元中,Dock4 调节轴突-树突极性的建立和树突的分支,这是神经分化过程中的两个关键过程。重要的是,与自闭症和阅读障碍相关的一个微缺失 Dock4 突变体,其缺失 GEF 结构域,导致神经突生长和神经元极化缺陷。进一步的分析表明,Dock4 的 SH3 结构域介导的相互作用对于其向神经突分化的活性是必需的,而其富含脯氨酸的 C 末端对于这种调节不是必需的。总之,我们的研究结果揭示了 Dock4 在早期神经元发育过程中对神经突分化的重要作用。