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首页> 外文期刊>Acta Neuropathologica Communications >ALS-linked misfolded SOD1 species have divergent impacts on mitochondria
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ALS-linked misfolded SOD1 species have divergent impacts on mitochondria

机译:ALS相关的错误折叠的SOD1物种对线粒体的影响不同

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摘要

Approximately 20?% of familial Amyotrophic Lateral Sclerosis (ALS) is caused by mutations in superoxide dismutase ( SOD1) , which leads to misfolding of the SOD1 protein, resulting in a toxic gain of function. Several conformation-restricted antibodies have been generated that specifically recognize misfolded SOD1 protein, and have been used as therapeutics in pre-clinical models. Misfolded SOD1 selectively associates with spinal cord mitochondria in SOD1 rodent models. Using the SOD1G93A rat model, we find that SOD1 conformational specific antibodies AMF7-63 and DSE2-3H1 labeled a fibrillar network concentrated in the anterior horn; while A5C3, B8H10, C4F6 and D3H5 labeled motor neurons as well as puncta in the neuropil. There is a time-dependent accumulation of misfolded SOD1 at the surface of spinal cord mitochondria with AMF7-63-labeled mitochondria having increased volume in contrast to a mitochondrial subset labeled with B8H10. In spinal cord homogenates and isolated mitochondria, AMF7-63, DSE2-3H1 and B8H10 detect misfolded SOD1 aggregates. SOD1 that lacks its metal cofactors has an increased affinity for na?ve mitochondria and misfolded SOD1 antibodies B8H10 and DSE2-3H1 readily detect demetalated mutant and wild-type SOD1. Together, these data suggest that multiple non-native species of misfolded SOD1 may exist, some of which are associated with mitochondrial damage. Conformational antibodies are invaluable tools to identify and characterize the variation in misfolded SOD1 species with regards to biochemical characteristics and toxicity. This information is highly relevant to the further development of these reagents as therapeutics.
机译:家族性肌萎缩性侧索硬化症(ALS)的大约20%是由超氧化物歧化酶(SOD1)的突变引起的,该突变导致SOD1蛋白的错误折叠,从而导致功能性毒性增加。已经产生了几种构象受限的抗体,它们可以特异性识别错误折叠的SOD1蛋白,并已在临床前模型中用作治疗剂。在SOD1啮齿动物模型中,错误折叠的SOD1与脊髓线粒体选择性相关。使用SOD1 G93A 大鼠模型,我们发现SOD1构象特异性抗体AMF7-63和DSE2-3H1标记了集中在前角的纤维网络。而A5C3,B8H10,C4F6和D3H5则标记了运动神经元以及神经pil中的泪点。与B8H10标记的线粒体子集相比,AMF7-63标记的线粒体的体积增加了脊髓线粒体表面错误折叠的SOD1的时间依赖性。在脊髓匀浆和分离的线粒体中,AMF7-63,DSE2-3H1和B8H10检测到错误折叠的SOD1聚集体。缺少金属辅因子的SOD1对幼稚线粒体的亲和力增加,并且SOD1抗体B8H10和DSE2-3H1错折叠容易检测到脱金属的突变体和野生型SOD1。总之,这些数据表明,可能存在多种非天然物种的错误折叠的SOD1,其中一些与线粒体损伤有关。构象抗体是鉴定和表征错误折叠的SOD1物种在生化特征和毒性方面的变异的宝贵工具。这些信息与这些试剂作为治疗剂的进一步发展高度相关。

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