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Role of the Menkes copper-transporting ATPase in NMDA receptor-mediated neuronal toxicity.门克斯铜转运ATP酶在NMDA受体介导的神经元毒性中的作用。
Proc Natl Acad Sci U S A. 2006 Oct 3;103(40):14919-24. doi: 10.1073/pnas.0605390103. Epub 2006 Sep 26.
2
NMDA receptor activation mediates copper homeostasis in hippocampal neurons.N-甲基-D-天冬氨酸受体激活介导海马神经元中的铜稳态。
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3
Autonomous requirements of the Menkes disease protein in the nervous system.门克斯病蛋白在神经系统中的自主需求。
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Copper homeostasis in the CNS: a novel link between the NMDA receptor and copper homeostasis in the hippocampus.中枢神经系统中的铜稳态:海马体中N-甲基-D-天冬氨酸受体与铜稳态之间的新联系。
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The Activity of Menkes Disease Protein ATP7A Is Essential for Redox Balance in Mitochondria.门克斯病蛋白ATP7A的活性对线粒体的氧化还原平衡至关重要。
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Mutation in the CPC motif-containing 6th transmembrane domain affects intracellular localization, trafficking and copper transport efficiency of ATP7A protein in mosaic mutant mice--an animal model of Menkes disease.CPC 结构域包含 6 跨膜域的突变影响 ATP7A 蛋白在镶嵌突变鼠(Menkes 病的动物模型)中的细胞内定位、运输和铜转运效率。
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本文引用的文献

1
Developmental changes in the expression of ATP7A during a critical period in postnatal neurodevelopment.出生后神经发育关键期内ATP7A表达的发育变化。
Neuroscience. 2006;139(3):947-64. doi: 10.1016/j.neuroscience.2006.01.044. Epub 2006 Mar 23.
2
Caspase-3 deficiency during development increases vulnerability to hypoxic-ischemic injury through caspase-3-independent pathways.发育过程中半胱天冬酶-3缺乏通过非半胱天冬酶-3依赖途径增加对缺氧缺血性损伤的易感性。
Neurobiol Dis. 2006 Jun;22(3):523-37. doi: 10.1016/j.nbd.2005.12.017. Epub 2006 Feb 9.
3
The developmentally regulated expression of Menkes protein ATP7A suggests a role in axon extension and synaptogenesis.门克斯蛋白ATP7A的发育调控表达表明其在轴突延伸和突触形成中发挥作用。
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Protein S-nitrosylation: purview and parameters.蛋白质S-亚硝基化:范围与参数
Nat Rev Mol Cell Biol. 2005 Feb;6(2):150-66. doi: 10.1038/nrm1569.
5
NMDA receptor activation mediates copper homeostasis in hippocampal neurons.N-甲基-D-天冬氨酸受体激活介导海马神经元中的铜稳态。
J Neurosci. 2005 Jan 5;25(1):239-46. doi: 10.1523/JNEUROSCI.3699-04.2005.
6
Structure of the molybdopterin-bound Cnx1G domain links molybdenum and copper metabolism.与钼蝶呤结合的Cnx1G结构域的结构将钼和铜代谢联系起来。
Nature. 2004 Aug 12;430(7001):803-6. doi: 10.1038/nature02681.
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Copper deficiency myelopathy produces a clinical picture like subacute combined degeneration.铜缺乏性脊髓病产生类似亚急性联合变性的临床表现。
Neurology. 2004 Jul 13;63(1):33-9. doi: 10.1212/01.wnl.0000132644.52613.fa.
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Unraveling the mechanisms involved in motor neuron degeneration in ALS.揭示肌萎缩侧索硬化症中运动神经元变性所涉及的机制。
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Myelopathy due to copper deficiency.铜缺乏所致脊髓病
Neurology. 2004 May 11;62(9):1655-6; author reply 1656. doi: 10.1212/wnl.62.9.1655-a.
10
Novel neural modulators.新型神经调节剂。
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门克斯铜转运ATP酶在NMDA受体介导的神经元毒性中的作用。

Role of the Menkes copper-transporting ATPase in NMDA receptor-mediated neuronal toxicity.

作者信息

Schlief Michelle L, West Tim, Craig Ann Marie, Holtzman David M, Gitlin Jonathan D

机构信息

Mallinckrodt Department of Pediatrics, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Oct 3;103(40):14919-24. doi: 10.1073/pnas.0605390103. Epub 2006 Sep 26.

DOI:10.1073/pnas.0605390103
PMID:17003121
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1578502/
Abstract

Menkes disease, a fatal neurodegenerative disorder resulting in seizures, hypotonia, and failure to thrive, is due to inherited loss-of-function mutations in the gene encoding a copper-transporting ATPase (Atp7a) on the X chromosome. Although affected patients exhibit signs and symptoms of copper deficiency, the mechanisms resulting in neurologic disease remain unknown. We recently discovered that Atp7a is required for the production of an NMDA receptor-dependent releasable copper pool within hippocampal neurons, a finding that suggests a role for copper in activity-dependent modulation of synaptic activity. In support of this hypothesis, we now demonstrate that copper chelation exacerbates NMDA-mediated excitotoxic cell death in primary hippocampal neurons, whereas the addition of copper is specifically protective and results in a significant decrease in cytoplasmic Ca(2+) levels after NMDA receptor activation. Consistent with the known neuroprotective effect of NMDA receptor nitrosylation, we show here that this protective effect of copper depends on endogenous nitric oxide production in hippocampal neurons, demonstrating in vivo links among neuroprotection, copper metabolism, and nitrosylation. Atp7a is required for these copper-dependent effects: Hippocampal neurons isolated from newborn Mo(br) mice reveal a marked sensitivity to endogenous glutamate-mediated NMDA receptor-dependent excitotoxicity in vitro, and mild hypoxic/ischemic insult to these mice in vivo results in significantly increased caspase 3 activation and neuronal injury. Taken together, these data reveal a unique connection between copper homeostasis and NMDA receptor activity that is of broad relevance to the processes of synaptic plasticity and excitotoxic cell death.

摘要

门克斯病是一种致命的神经退行性疾病,会导致癫痫发作、肌张力减退和发育不良,它是由X染色体上编码铜转运ATP酶(Atp7a)的基因发生遗传性功能丧失突变所致。尽管患病患者表现出铜缺乏的体征和症状,但导致神经疾病的机制仍不清楚。我们最近发现,Atp7a是海马神经元内产生NMDA受体依赖性可释放铜池所必需的,这一发现表明铜在突触活动的活性依赖性调节中发挥作用。为支持这一假说,我们现在证明,铜螯合会加剧原代海马神经元中NMDA介导的兴奋性毒性细胞死亡,而添加铜则具有特异性保护作用,并导致NMDA受体激活后细胞质Ca(2+)水平显著降低。与已知的NMDA受体亚硝化的神经保护作用一致,我们在此表明铜的这种保护作用取决于海马神经元中内源性一氧化氮的产生,这证明了神经保护、铜代谢和亚硝化之间的体内联系。这些铜依赖性效应需要Atp7a:从新生Mo(br)小鼠分离的海马神经元在体外对内源性谷氨酸介导的NMDA受体依赖性兴奋性毒性表现出明显的敏感性,并且在体内对这些小鼠进行轻度缺氧/缺血性损伤会导致半胱天冬酶3激活和神经元损伤显著增加。综上所述,这些数据揭示了铜稳态与NMDA受体活性之间的独特联系,这与突触可塑性和兴奋性毒性细胞死亡过程具有广泛的相关性。