首页> 外文期刊>Amyotrophic lateral sclerosis and other motor neuron disorders: Official publication of the World Federation of Neurology, Research Group on Motor Neuron Diseases >Frameshift, nonsense and non amino acid altering mutations in SOD1 in familial ALS: report of a Japanese pedigree and literature review
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Frameshift, nonsense and non amino acid altering mutations in SOD1 in familial ALS: report of a Japanese pedigree and literature review

机译:家族性ALS中SOD1的移码,无义和非氨基酸改变突变:日本血统书和文献综述

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We demonstrated the clinical characteristics of each member of a family from Oki Island in western Japan, whose members have familial amyotrophic lateral sclerosis (FALS) with a 2-base pair (bp) deletion at codon 126 of Cu/Zn superoxide dismutase (SOD1) gene. Mean disease duration among the Oki family members was about 2 years. Long-term survivors with respiratory support presented disturbances in eye movement and urination toward the end stages of the disease. In addition, we focused on in-vitro instabilities in the frameshift and nonsense mutations, including the 2-bp deletion, as well as some deletional, insertional and intronic mutations. These mutations were all found within exon 4, exon 5 and intron 4. As for the durations of illness, there were no significant differences between FALS patients with these SOD1 mutations and those with point mutations, although the former cases were likely to have shorter disease duration. In cell culture experiments, SOD1 proteins with frameshift and nonsense mutations were extremely unstable and showed very short half-lives. We postulated that the invitro instability of the mutant SOD1 might be related to the pathogenesis of FALS, e.g. through the mechanism of copper release.
机译:我们展示了来自日本西部冲木岛的一个家庭的每个成员的临床特征,该成员的家族患有肌萎缩性肌萎缩性侧索硬化症(FALS),其铜/锌超氧化物歧化酶(SOD1)的第126位密码子缺失2个碱基对(bp)。基因。 Oki家族成员的平均病程约为2年。长期呼吸支持的幸存者在疾病的末期出现眼球运动和排尿障碍。此外,我们集中研究了移码和无义突变的体外不稳定性,包括2 bp缺失以及一些缺失,插入和内含子突变。这些突变都在外显子4,外显子5和内含子4内发现。就病程而言,具有这些SOD1突变的FALS患者和具有点突变的FALS患者之间没有显着差异,尽管以前的病例可能病程较短。持续时间。在细胞培养实验中,具有移码和无义突变的SOD1蛋白非常不稳定,并且半衰期很短。我们推测突变体SOD1的体外不稳定性可能与FALS的发病机理有关,例如通过铜释放的机制。

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