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Kidins220/ARMS mediates the integration of the neurotrophin and VEGF pathways in the vascular and nervous systems.Kidins220/ARMS 介导神经营养因子和 VEGF 通路在血管和神经系统中的整合。
Cell Death Differ. 2012 Feb;19(2):194-208. doi: 10.1038/cdd.2011.141. Epub 2011 Nov 3.
2
Kidins220/ARMS as a functional mediator of multiple receptor signalling pathways.Kidins220/ARMS 作为多种受体信号通路的功能介体。
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Novel Kidins220/ARMS Splice Isoforms: Potential Specific Regulators of Neuronal and Cardiovascular Development.新型Kidins220/ARMS剪接异构体:神经元和心血管发育的潜在特异性调节因子
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Kidins220/ARMS is transported by a kinesin-1-based mechanism likely to be involved in neuronal differentiation.Kidins220/ARMS 通过一种基于驱动蛋白-1的机制进行转运,该机制可能参与神经元分化。
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Kidins220-deficient hydrocephalus mice exhibit altered glial phenotypes and AQP4 differential regulation in the retina and optic nerve, with preserved retinal ganglion cell survival.缺乏Kidins220的脑积水小鼠在视网膜和视神经中表现出神经胶质细胞表型改变和水通道蛋白4(AQP4)的差异调节,同时视网膜神经节细胞的存活得以保留。
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Significantly higher rates of KIDINS220 polymorphisms in patients with obesity and end-stage renal disease.肥胖和终末期肾病患者中KIDINS220基因多态性的发生率显著更高。
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7
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8
Kidins220 and Aiolos promote thymic iNKT cell development by reducing TCR signals.Kidins220 和 Aiolos 通过降低 TCR 信号促进胸腺 iNKT 细胞的发育。
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The genetic basis of hydrocephalus: genes, pathways, mechanisms, and global impact.脑积水的遗传学基础:基因、途径、机制和全球影响。
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Alterations in KIDINS220/ARMS Expression Impact Sensory Processing and Social Behavior in Adult Mice.KIDINS220/ARMS 表达的改变影响成年小鼠的感觉处理和社会行为。
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本文引用的文献

1
Kidins220/ARMS is an essential modulator of cardiovascular and nervous system development.Kidins220/ARMS 是心血管和神经系统发育的重要调节因子。
Cell Death Dis. 2011 Nov 3;2(11):e226. doi: 10.1038/cddis.2011.108.
2
Long-distance control of synapse assembly by target-derived NGF.靶源性神经生长因子对突触形成的远距离控制。
Neuron. 2010 Aug 12;67(3):422-34. doi: 10.1016/j.neuron.2010.07.018.
3
The ARMS/Kidins220 scaffold protein modulates synaptic transmission.ARMS/Kidins220 支架蛋白调节突触传递。
Mol Cell Neurosci. 2010 Oct;45(2):92-100. doi: 10.1016/j.mcn.2010.06.002. Epub 2010 Jun 12.
4
Kidins220/ARMS regulates Rac1-dependent neurite outgrowth by direct interaction with the RhoGEF Trio.Kidins220/ARMS 通过与 RhoGEF Trio 的直接相互作用调节 Rac1 依赖性的轴突生长。
J Cell Sci. 2010 Jun 15;123(Pt 12):2111-23. doi: 10.1242/jcs.064055.
5
Kidins220/ARMS modulates the activity of microtubule-regulating proteins and controls neuronal polarity and development.Kidins220/ARMS 调节微管调节蛋白的活性,控制神经元极性和发育。
J Biol Chem. 2010 Jan 8;285(2):1343-57. doi: 10.1074/jbc.M109.024703. Epub 2009 Nov 10.
6
Kidins220/ARMS downregulation by excitotoxic activation of NMDARs reveals its involvement in neuronal survival and death pathways.通过NMDARs的兴奋性毒性激活下调Kidins220/ARMS揭示了其参与神经元存活和死亡途径。
J Cell Sci. 2009 Oct 1;122(Pt 19):3554-65. doi: 10.1242/jcs.056473.
7
Ankyrin Repeat-rich Membrane Spanning/Kidins220 protein regulates dendritic branching and spine stability in vivo.富含锚蛋白重复序列的跨膜/Kidins220蛋白在体内调节树突分支和棘稳定性。
Dev Neurobiol. 2009 Aug;69(9):547-57. doi: 10.1002/dneu.20723.
8
Cardiovascular actions of neurotrophins.神经营养因子的心血管作用。
Physiol Rev. 2009 Jan;89(1):279-308. doi: 10.1152/physrev.00007.2008.
9
GDNF and GFRalpha: a versatile molecular complex for developing neurons.胶质细胞源性神经营养因子(GDNF)与胶质细胞源性神经营养因子受体α(GFRalpha):一种促进神经元发育的多功能分子复合物。
Trends Neurosci. 2008 Aug;31(8):384-91. doi: 10.1016/j.tins.2008.05.003. Epub 2008 Jul 1.
10
Ankyrin-rich membrane spanning protein plays a critical role in nuclear factor-kappa B signaling.富含锚蛋白的跨膜蛋白在核因子-κB信号传导中起关键作用。
Mol Cell Neurosci. 2008 Jul;38(3):404-16. doi: 10.1016/j.mcn.2008.04.001. Epub 2008 Apr 16.

Kidins220/ARMS 介导神经营养因子和 VEGF 通路在血管和神经系统中的整合。

Kidins220/ARMS mediates the integration of the neurotrophin and VEGF pathways in the vascular and nervous systems.

机构信息

Department of Neuroscience and Brain Technologies, The Italian Institute of Technology, via Morego 30, 16163 Genoa, Italy.

出版信息

Cell Death Differ. 2012 Feb;19(2):194-208. doi: 10.1038/cdd.2011.141. Epub 2011 Nov 3.

DOI:10.1038/cdd.2011.141
PMID:22048155
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3263493/
Abstract

Signaling downstream of receptor tyrosine kinases controls cell differentiation and survival. How signals from different receptors are integrated is, however, still poorly understood. In this work, we have identified Kidins220 (Kinase D interacting substrate of 220 kDa)/ARMS (Ankyrin repeat-rich membrane spanning) as a main player in the modulation of neurotrophin and vascular endothelial growth factor (VEGF) signaling in vivo, and a primary determinant for neuronal and cardiovascular development. Kidins220(-/-) embryos die at late stages of gestation, and show extensive cell death in the central and peripheral nervous systems. Primary neurons from Kidins220(-/-) mice exhibit reduced responsiveness to brain-derived neurotrophic factor, in terms of activation of mitogen-activated protein kinase signaling, neurite outgrowth and potentiation of excitatory postsynaptic currents. In addition, mice lacking Kidins220 display striking cardiovascular abnormalities, possibly due to impaired VEGF signaling. In support of this hypothesis, we demonstrate that Kidins220 constitutively interacts with VEGFR2. These findings, together with the data presented in the accompanying paper, indicate that Kidins220 mediates the integration of several growth factor receptor pathways during development, and mediates the activation of distinct downstream cascades according to the location and timing of stimulation.

摘要

受体酪氨酸激酶信号转导控制着细胞分化和存活。然而,不同受体的信号如何整合仍知之甚少。在这项工作中,我们已经确定 Kidins220(激酶 D 相互作用的 220 kDa 底物)/ARMS(富含锚蛋白重复的跨膜)是体内神经生长因子和血管内皮生长因子(VEGF)信号转导调节的主要参与者,也是神经元和心血管发育的主要决定因素。Kidins220(-/-)胚胎在妊娠晚期死亡,并在中枢和外周神经系统中显示广泛的细胞死亡。Kidins220(-/-)小鼠的原代神经元在脑源性神经营养因子刺激下表现出较低的反应性,表现在丝裂原活化蛋白激酶信号转导、突起生长和兴奋性突触后电流的增强方面。此外,缺乏 Kidins220 的小鼠表现出明显的心血管异常,可能是由于 VEGF 信号受损所致。支持这一假说,我们证明 Kidins220 与 VEGFR2 持续相互作用。这些发现,连同随附论文中提出的资料,表明 Kidins220 在发育过程中介导了几种生长因子受体途径的整合,并根据刺激的位置和时间,介导了不同下游级联的激活。