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首页> 外文期刊>Acta Neuropathologica >Aberrant association of misfolded SOD1 with Na+/K(+)ATPase-alpha 3 impairs its activity and contributes to motor neuron vulnerability in ALS
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Aberrant association of misfolded SOD1 with Na+/K(+)ATPase-alpha 3 impairs its activity and contributes to motor neuron vulnerability in ALS

机译:错误折叠的SOD1与Na + / K(+)ATPase-alpha 3的异常关联会削弱其活性,并导致ALS中的运动神经元易损性

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摘要

Amyotrophic lateral sclerosis (ALS) is an adult onset progressive motor neuron disease with no cure. Transgenic mice overexpressing familial ALS associated human mutant SOD1 are a commonly used model for examining disease mechanisms. Presently, it is well accepted that alterations in motor neuron excitability and spinal circuits are pathological hallmarks of ALS, but the underlying molecular mechanisms remain unresolved. Here, we sought to understand whether the expression of mutant SOD1 protein could contribute to altering processes governing motor neuron excitability. We used the conformation specific antibody B8H10 which recognizes a misfolded state of SOD1 (misfSOD1) to longitudinally identify its interactome during early disease stage in SOD1G93A mice. This strategy identified a direct isozyme-specific association of misfSOD1 with Na+/K(+)ATPase-alpha 3 leading to the premature impairment of its ATPase activity. Pharmacological inhibition of Na+/K(+)ATPase-alpha 3 altered glutamate receptor 2 expression, modified cholinergic inputs and accelerated disease pathology. After mapping the site of direct association of misfSOD1 with Na+/K(+)ATPase-alpha 3 onto a 10 amino acid stretch that is unique to Na+/K(+)ATPase-alpha 3 but not found in the closely related Na+/K(+)ATPase-alpha 1 isozyme, we generated a misfSOD1 binding deficient, but fully functional Na+/K(+)ATPase-alpha 3 pump. Adeno associated virus (AAV)-mediated expression of this chimeric Na+/K(+)ATPase-alpha 3 restored Na+/K(+)ATPase-alpha 3 activity in the spinal cord, delayed pathological alterations and prolonged survival of SOD1G93A mice. Additionally, altered Na+/K(+)ATPase-alpha 3 expression was observed in the spinal cord of individuals with sporadic and familial ALS. A fraction of sporadic ALS cases also presented B8H10 positive misfSOD1 immunoreactivity, suggesting that similar mechanism might contribute to the pathology.
机译:肌萎缩性侧索硬化症(ALS)是无法治愈的成人发作性进行性运动神经元疾病。过表达家族性ALS相关的人类突变体SOD1的转基因小鼠是检查疾病机制的常用模型。目前,运动神经元兴奋性和脊髓回路的改变是ALS的病理学特征是公认的,但潜在的分子机制仍未解决。在这里,我们试图了解突变型SOD1蛋白的表达是否可能有助于改变控制运动神经元兴奋性的过程。我们使用了构象特异性抗体B8H10,该抗体识别SOD1的错误折叠状态(misfSOD1),以便在SOD1G93A小鼠疾病早期阶段纵向识别其相互作用组。此策略确定了misfSOD1与Na + / K(+)ATPase-alpha 3的直接同工酶特异性关联,导致其ATPase活性过早受损。 Na + / K(+)ATPase-alpha 3的药理抑制作用改变了谷氨酸受体2的表达,改变了胆碱能输入并加速了疾病病理。在将misfSOD1与Na + / K(+)ATPase-alpha 3直接缔合的位点定位到10个氨基酸延伸段后,该序列是Na + / K(+)ATPase-alpha 3所特有的,但在紧密相关的Na + / K中找不到(+)ATPase-alpha 1同工酶,我们生成了misfSOD1结合缺陷,但功能正常的Na + / K(+)ATPase-alpha 3泵。腺相关病毒(AAV)介导的嵌合Na + / K(+)ATPase-alpha 3的表达恢复了脊髓中Na + / K(+)ATPase-alpha 3的活性,延迟了病理改变并延长了SOD1G93A小鼠的存活率。另外,在患有散发性和家族性ALS的个体的脊髓中观察到改变的Na + / K(+)ATPase-alpha 3表达。少数散发性ALS病例还表现出B8H10阳性misfSOD1免疫反应性,表明相似的机制可能有助于病理。

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