首页> 美国卫生研究院文献>Molecular Medicine >Efficient mitochondrial import of newly synthesized ornithine transcarbamylase (OTC) and correction of secondary metabolic alterations in spf(ash) mice following gene therapy of OTC deficiency.
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Efficient mitochondrial import of newly synthesized ornithine transcarbamylase (OTC) and correction of secondary metabolic alterations in spf(ash) mice following gene therapy of OTC deficiency.

机译:有效的线粒体新合成的鸟氨酸转氨甲酰酶(OTC)的导入并校正OTC缺乏症基因治疗后spf(ash)小鼠的继发代谢改变。

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摘要

BACKGROUND: The mouse strain sparse fur with abnormal skin and hair (spf(ash)) is a model for the human ornithine transcarbamylase (OTC) deficiency, an X-linked inherited urea cycle disorder. The spf(ash) mouse carries a single base-pair mutation in the OTC gene that leads to the production of OTC enzyme at 10% of the normal level. MATERIALS AND METHODS: Recombinant adenoviruses carrying either mouse (Ad.mOTC) or human (Ad.hOTC) OTC cDNA were injected intravenously into the spf(ash) mice. Expression of OTC enzyme precursor and its translocation to mitochondria in the vector-transduced hepatocytes were analyzed on an ultrastructural level. Liver OTC activity and mitochondrial OTC concentration were significantly increased (300% of normal) in mice treated with Ad.mOTC and were moderately increased in mice receiving Ad.hOTC (34% of normal). The concentration and subcellular location of OTC and associated enzymes were studied by electron microscope immunolocalization and quantitative morphometry. RESULTS: Cytosolic OTC concentration remained unchanged in Ad.mOTC-injected mice but was significantly increased in mice receiving Ad.hOTC, suggesting a block of mitochondria translocation for the human OTC precursor. Mitochondrial ATPase subunit c [ATPase(c)] was significantly reduced and mitochondrial carbamy delta phosphate synthetase I (CPSI) was significantly elevated in spf(ash) mice relative to C3H. In Ad.mOTC-treated mice, the hepatic mitochondrial concentration of ATPase(c) was completely normalized and the CPSI concentration was partially corrected. CONCLUSIONS: Taken together, we conclude that newly synthesized mouse OTC enzyme was efficiently imported into mitochondria following vector-mediated gene delivery in spf(ash) mice, correcting secondary metabolic alterations.
机译:背景:皮肤和毛发异常的小鼠稀疏皮毛(spf(ash))是人类鸟氨酸转氨甲酰酶(OTC)缺乏症的模型,这是一种X连锁遗传性尿素循环障碍。 spf(ash)小鼠在OTC基因中携带一个碱基对突变,从而导致OTC酶的产生量为正常水平的10%。材料与方法:将携带小鼠(Ad.mOTC)或人(Ad.hOTC)OTC cDNA的重组腺病毒静脉内注射到spf(ash)小鼠中。在超结构水平上分析了在载体转导的肝细胞中OTC酶前体的表达及其向线粒体的转运。在用Ad.mOTC治疗的小鼠中,肝OTC活性和线粒体OTC浓度显着增加(正常值的300%),在接受Ad.hOTC的小鼠中肝脏的OTC活性和线粒体OTC浓度(正常值的34%)适度增加。通过电子显微镜免疫定位和定量形态学研究了OTC和相关酶的浓度和亚细胞位置。结果:注射Ad.mOTC的小鼠的胞质OTC浓度保持不变,但在接受Ad.hOTC的小鼠中明显升高,表明人OTC前体的线粒体易位障碍。相对于C3H,spf(ash)小鼠的线粒体ATPase亚基c [ATPase(c)]显着降低,线粒体氨基磷酸磷酸酯合成酶I(CPSI)显着升高。在Ad.mOTC处理的小鼠中,ATPase(c)的肝线粒体浓度已完全标准化,CPSI浓度已部分校正。结论:综上所述,我们得出的结论是,在spf(ash)小鼠中通过载体介导的基因传递后,新合成的小鼠OTC酶被有效地导入线粒体,纠正了次级代谢改变。

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