首页> 美国卫生研究院文献>American Journal of Human Genetics >A single amino acid substitution within the mature sequence of ornithine aminotransferase obstructs mitochondrial entry of the precursor.
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A single amino acid substitution within the mature sequence of ornithine aminotransferase obstructs mitochondrial entry of the precursor.

机译:鸟氨酸氨基转移酶成熟序列中的单个氨基酸取代会阻碍前体的线粒体进入。

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摘要

We describe here evidence of congenital enzyme mistargeting induced not by abnormalities in the signal sequence. We examined the molecular mechanism of hereditary ornithine aminotransferase (OAT) deficiency causing gyrate atrophy of the choroid and retina (GACR). Nucleotide sequencing of OAT cDNA generated from a GACR patient's mRNA revealed a single base change from C to G at position 268, resulting in an amino acid substitution of neutral Gln(CAA) with negatively charged Glu(GAA) at position 90 (Q90E). Immunohistochemical and transient expression analyses suggested expression of a defective labile OAT in the patient's tissues. However, high-level expression and immunocytochemical analyses elucidated that Q90E OAT (the patient's OAT) was localized within the limits of cytoplasmic free ribosomes in precursor form without any mitochondrial entry, indicating that the patient's precursor OAT was synthesized and rapidly degraded because of accumulation in the cytosol. It is interesting that, although the mutation site (Q90E) in this GACR patient's OAT was within the coding sequence of the mature protein, the precursor exhibited loss of mitochondrial targeting function. These findings suggest that not only the signal sequence but a critical part of the mature sequence plays an essential role in mitochondrial entry of the OAT precursor protein.
机译:我们在这里描述不是信号序列异常引起的先天性酶错靶的证据。我们检查了遗传性鸟氨酸氨基转移酶(OAT)缺乏引起脉络膜和视网膜回旋萎缩(GACR)的分子机制。从GACR患者的mRNA产生的OAT cDNA的核苷酸测序显示,第268位从C到G有一个单碱基变化,导致中性Gln(CAA)的氨基酸被第90位(Q90E)带负电荷的Glu(GAA)取代。免疫组织化学和瞬时表达分析表明,患者组织中不稳定的OAT有缺陷的表达。然而,高水平的表达和免疫细胞化学分析表明,Q90E OAT(患者的OAT)以无任何线粒体进入的前体形式局限在胞浆游离核糖体的限度内,这表明该患者的前体OAT是合成的,并且由于积累而迅速降解。细胞质。有趣的是,尽管此GACR患者的OAT中的突变位点(Q90E)在成熟蛋白的编码序列内,但前体表现出线粒体靶向功能的丧失。这些发现表明,不仅信号序列而且成熟序列的关键部分在OAT前体蛋白的线粒体进入中都起着至关重要的作用。

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