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首页> 外文期刊>Human Molecular Genetics >Mitochondrial damage revealed by immunoselection for ALS-linked misfolded SOD1.
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Mitochondrial damage revealed by immunoselection for ALS-linked misfolded SOD1.

机译:通过针对ALS连锁错误折叠的SOD1的免疫选择揭示了线粒体损伤。

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摘要

Mutant superoxide dismutase 1 (SOD1) selectively associates with spinal cord mitochondria in rodent models of SOD1-mediated amyotrophic lateral sclerosis. A portion of mutant SOD1 exists in a non-native/misfolded conformation that is selectively recognized by conformational antibodies. Misfolded SOD1 is common to all mutant SOD1 models, is uniquely found in areas affected by the disease and is considered to mediate toxicity. We report that misfolded SOD1 recognized by the antibody B8H10 is present in greater abundance in mitochondrial fractions of SOD1(G93A) rat spinal cords compared with oxidized SOD1, as recognized by the C4F6 antibody. Using a novel flow cytometric assay, we detect an age-dependent deposition of B8H10-reactive SOD1 on spinal cord mitochondria from both SOD1(G93A) rats and SOD1(G37R) mice. Mitochondrial damage, including increased mitochondrial volume, excess superoxide production and increased exposure of the toxic BH3 domain of Bcl-2, tracks positively with the presence of misfolded SOD1. Lastly, B8H10 reactive misfolded SOD1 is present in the lysates and mitochondrial fractions of lymphoblasts derived from ALS patients carrying SOD1 mutations, but not in controls. Together, these results highlight misfolded SOD1 as common to two ALS rodent animal models and familial ALS patient lymphoblasts with four different SOD1 mutations. Studies in the animal models point to a role for misfolded SOD1 in mitochondrial dysfunction in ALS pathogenesis.
机译:在SOD1介导的肌萎缩性侧索硬化的啮齿动物模型中,突变型超氧化物歧化酶1(SOD1)与脊髓线粒体选择性关联。突变体SOD1的一部分以非天然/错折叠的构象存在,可被构象抗体选择性识别。错误折叠的SOD1在所有突变型SOD1模型中都很常见,在受疾病影响的区域中唯一发现,并被认为可介导毒性。我们报告说,与氧化的SOD1相比,由抗体B8H10识别的错折叠的SOD1存在于SOD1(G93A)大鼠脊髓的线粒体部分中的丰度更大,正如被C4F6抗体识别的那样。使用一种新型的流式细胞术,我们检测到了年龄依赖的B8H10反应性SOD1在SOD1(G93A)大鼠和SOD1(G37R)小鼠的脊髓线粒体上的沉积。线粒体损伤,包括增加的线粒体体积,过量的超氧化物生成和Bcl-2毒性BH3结构域暴露的增加,在SOD1错折叠的情况下呈阳性。最后,B8H10反应性错误折叠的SOD1存在于源自携带SOD1突变的ALS患者的淋巴母细胞的裂解物和线粒体级分中,但在对照中却没有。在一起,这些结果突出了错误折叠的SOD1,常见于两个ALS啮齿动物模型和具有四个不同SOD1突变的家族性ALS患者淋巴母细胞。动物模型研究指出,SOD1错折叠在ALS发病机制中的线粒体功能障碍中起作用。

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