首页> 外文期刊>Brain: A journal of neurology >Superoxide dismutase in CSF from amyotrophic lateral sclerosis patients with and without CuZn-superoxide dismutase mutations.
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Superoxide dismutase in CSF from amyotrophic lateral sclerosis patients with and without CuZn-superoxide dismutase mutations.

机译:有和没有CuZn超氧化物歧化酶突变的肌萎缩性侧索硬化患者脑脊液中超氧化物歧化酶。

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摘要

Mutations in CuZn-superoxide dismutase (CuZn-SOD) have been linked to familial amyotrophic lateral sclerosis (ALS), and motor neurone death is caused by the gain of a toxic property of the mutant protein. Here we determined amounts, activity and molecular forms of CuZn-SOD in CSF from ALS patients carrying the D90A and other CuZn-SOD mutations and patients without such mutations. There were no differences in amount of protein and enzymic activities of CuZn-SOD between 37 neurological controls, 54 sporadic and 12 familial ALS cases, and 10 cases homozygous for the D90A mutation. Three cases heterozygous for the A89V, S105L and G114A CuZn-SOD mutations showed low amounts of CuZn-SOD. There was no evidence for accumulation of inactive protein in any of the groups. Immunoblots showed no evidence for the presence of any precipitates or other molecular forms of CuZn-SOD with higher molecular weight in the groups. About 25% of the CuZn-SOD subunits in CSF from controls shows an N-terminal truncation. This truncated portion does not differ between controls and ALS groups not carrying CuZn-SOD mutations, but is 70% larger in samples from D90A homozygous ALS patients. The findings suggest an essentially normal amount and activity of D90A mutant CuZn-SOD in CNS tissues of ALS cases. The increased occurrence of N-terminally truncated mutant subunits may indicate a difference in degradation routes compared with the wild-type enzyme, resistance against subsequent proteolytic steps and/or a compromised downstream proteolytic machinery. Molecular fragments accumulated to a greater extent from the D90A mutant enzyme might contribute to the motor neurone degeneration. We also determined the other SOD isoenzymes: in the controls, CuZn-SOD contributed 75%, extracellular SOD 25% and Mn-SOD <5% of the total SOD activity. There was no difference in the amount of extracellular SOD between any of the groups.
机译:CuZn-超氧化物歧化酶(CuZn-SOD)中的突变已与家族性肌萎缩性侧索硬化症(ALS)相关联,并且运动神经元死亡是由突变蛋白的毒性特性引起的。在这里,我们确定了携带D90A和其他CuZn-SOD突变的ALS患者以及没有此类突变的ALS患者的CSF中CuZn-SOD的量,活性和分子形式。在37个神经系统对照,54例散发性和12例家族性ALS病例和10例纯合D90A突变患者之间,CuZn-SOD的蛋白质和酶活性量没有差异。 3例A89V,S105L和G114A CuZn-SOD突变的杂合子显示出少量CuZn-SOD。没有证据表明任何一组中都有失活蛋白的积累。免疫印迹显示没有证据表明该组中存在更高分子量的CuZn-SOD的任何沉淀物或其他分子形式。来自对照的CSF中约25%的CuZn-SOD亚基显示出N-末端截短。截短的部分在对照组和不携带CuZn-SOD突变的ALS组之间没有区别,但是在D90A纯合性ALS患者的样品中,截短的部分大70%。该发现表明ALS病例的CNS组织中D90A突变体CuZn-SOD的量和活性基本正常。与野生型酶相比,N末端截短的突变亚基增加的出现可能表明降解途径有所不同,对随后的蛋白水解步骤有抗性和/或下游蛋白水解机制受损。从D90A突变酶更大程度地积累的分子片段可能有助于运动神经元变性。我们还确定了其他SOD同工酶:在对照中,CuZn-SOD占总SOD活性的75%,细胞外SOD占25%,Mn-SOD <5%。两组之间的细胞外SOD量均无差异。

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