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首页> 外文期刊>Nature reviews. Neurology >ATP7A-related copper transport diseases-emerging concepts and future trends.
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ATP7A-related copper transport diseases-emerging concepts and future trends.

机译:与ATP7A相关的铜运输疾病的概念和未来趋势。

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摘要

This Review summarizes recent advances in understanding copper-transporting ATPase 1 (ATP7A), and examines the neurological phenotypes associated with dysfunction of this protein. Involvement of ATP7A in axonal outgrowth, synapse integrity and neuronal activation underscores the fundamental importance of copper metabolism to neurological function. Defects in ATP7A cause Menkes disease, an infantile-onset, lethal condition. Neonatal diagnosis and early treatment with copper injections enhance survival in patients with this disease, and can normalize clinical outcomes if mutant ATP7A molecules retain small amounts of residual activity. Gene replacement rescues a mouse model of Menkes disease, suggesting a potential therapeutic approach for patients with complete loss-of-function ATP7A mutations. Remarkably, a newly discovered ATP7A disorder-isolated distal motor neuropathy-has none of the characteristic clinical or biochemical abnormalities of Menkes disease or its milder allelic variant occipital horn syndrome (OHS), instead resembling Charcot-Marie-Tooth disease type 2. These findings indicate that ATP7A has a crucial but previously unappreciated role in motor neuron maintenance, and that the mechanism underlying ATP7A-related distal motor neuropathy is distinct from Menkes disease and OHS pathophysiology. Collectively, these insights refine our knowledge of the neurology of ATP7A-related copper transport diseases and pave the way for further progress in understanding ATP7A function.
机译:这篇综述总结了了解铜转运ATPase 1(ATP7A)的最新进展,并检查了与该蛋白功能障碍相关的神经表型。 ATP7A参与轴突生长,突触完整性和神经元激活强调了铜代谢对神经功能的根本重要性。 ATP7A的缺陷会导致Menkes病,这是一种婴儿发作的致死性疾病。如果突变的ATP7A分子保留少量残留活性,新生儿诊断和铜注射的早期治疗可提高该病患者的生存率,并使临床结果正常化。基因替代可以挽救Menkes疾病的小鼠模型,为具有完全功能丧失的ATP7A突变的患者提供了一种潜在的治疗方法。值得注意的是,新发现的一种ATP7A疾病分离的远端运动神经病,没有Menkes病或其轻度的等位基因变异枕叶综合症(OHS)的特征性临床或生化异常,而是类似2型Charcot-Marie-Tooth病。提示ATP7A在运动神经元维持中起着至关重要的作用,但以前并未被认识到,并且ATP7A相关的远端运动神经病的潜在机制与Menkes病和OHS病理生理学不同。总而言之,这些见解完善了我们对与ATP7A相关的铜转运疾病的神经病学知识,并为进一步理解ATP7A功能铺平了道路。

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