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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Yeast apurinic/apyrimidinic endonuclease Apn1 protects mammalian neuronal cell line from oxidative stress.
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Yeast apurinic/apyrimidinic endonuclease Apn1 protects mammalian neuronal cell line from oxidative stress.

机译:酵母嘌呤/嘧啶内切核酸酶Apn1保护哺乳动物神经元细胞系免受氧化应激。

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摘要

Reactive oxygen species (ROS) have been implicated as one of the agents responsible for many neurodegenerative diseases. A critical target for ROS is DNA. Most oxidative stress-induced DNA damage in the nucleus and mitochondria is removed by the base excision repair pathway. Apn1 is a yeast enzyme in this pathway which possesses a wider substrate specificity and greater enzyme activity than its mammalian counterpart for removing DNA damage, making it a good therapeutic candidate. For this study we targeted Apn1 to mitochondria in a neuronal cell line derived from the substantia nigra by using a mitochondrial targeting signal (MTS) in an effort to hasten the removal of DNA damage and thereby protect these cells. We found that following oxidative stress, mitochondrial DNA (mtDNA) was repaired more efficiently in cells containing Apn1 with the MTS than controls. There was no difference in nuclear repair. However, cells that expressed Apn1 without the MTS showed enhanced repair of both nuclear and mtDNA. Both Apn1-expressing cells were more resistant to cell death following oxidative stress compared with controls. Therefore, these results reveal that the expression of Apn1 in neurons may be of potential therapeutic benefit for treating patients with specific neurodegenerative diseases.
机译:活性氧(ROS)已被认为是引起许多神经退行性疾病的药物之一。 ROS的关键靶标是DNA。碱基切除修复途径可消除大多数氧化应激诱导的核和线粒体DNA损伤。 Apn1是该途径中的一种酵母酶,与哺乳动物相比,Apn1具有更宽的底物特异性和更大的酶活性,可消除DNA损伤,使其成为良好的治疗候选物。在本研究中,我们通过使用线粒体靶向信号(MTS)将Apn1靶向源自黑质的神经元细胞系中的线粒体,以努力消除DNA损伤,从而保护这些细胞。我们发现在氧化应激后,线粒体DNA(mtDNA)在含有Apn1和MTS的细胞中比对照更有效地修复。核修复没有区别。但是,表达没有MTS的Apn1的细胞显示出对核和mtDNA的增强修复。与对照相比,两种表达Apn1的细胞对氧化应激后的细胞死亡均具有更高的抵抗力。因此,这些结果表明,Apn1在神经元中的表达对于治疗特定的神经退行性疾病的患者可能具有潜在的治疗益处。

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