瓜氨酸血症
医学
共济失调
高氨血症
内科学
内分泌学
肌肉活检
精氨琥珀酸合成酶
进行性肌阵挛性癫痫
癫痫
瓜氨酸
线粒体脑肌病
张力减退
脑病
步态共济失调
精氨酸
活检
生物化学
生物
线粒体肌病
氨基酸
精神科
线粒体DNA
疾病
基因
作者
Ryohei Norioka,Shinsuke Tobisawa,Ryusei Nishigori,Tomiko Kuhara,Masahide Yazaki,Masayoshi Nagao,Toshihiro Ohura,Yasuyuki Takai,Asuka Funai,Kazuhito Miyamoto,Akihiro Kawata,Kazushi Takahashi
标识
DOI:10.5582/irdr.2021.01003
摘要
We report a case of saccharopinuria with hyperammonemia and hypercitrullinemia in a Japanese woman who presented with elderly-onset epilepsy, progressive cognitive decline, and gait ataxia. Blood amino acid analysis revealed an increase in citrulline, cystine, and lysine levels, and urine amino acid analysis showed increased citrulline and cystine levels. Urine metabolomics revealed an increased saccharopine level, leading to the definitive diagnosis of saccharopinuria. In western blots of liver biopsy samples, normal citrin levels were observed, suggesting that adult-onset citrullinemia type 2 (CTLN2) was not present. In addition, decreased argininosuccinate synthetase (ASS) levels were observed, and ASS1 gene, a causative gene for citrullinemia type 1 (CTLN1), was analyzed, but no gene mutations were found. Because the causes of hypercitrullinemia were not clear, it might be secondary to saccharopinuria. Muscle biopsy findings of the biceps brachii revealed diminished cytochrome c oxidase (COX) activity, mitochondrial abnormalities on electron microscopy and p62-positive structures in immunohistochemical analyses. Saccharopinuria is generally considered a benign metabolic variant, but our case showed elevated lysine and saccharopine levels causing ornithine circuit damage, mitochondrial dysfunction, and autophagy disorders. This may lead to so far unknown neurological disorders.
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