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对果蝇帕金森突变体的遗传学和基因组学研究表明,氧化应激和先天免疫反应在发病机制中起作用。

Genetic and genomic studies of Drosophila parkin mutants implicate oxidative stress and innate immune responses in pathogenesis.

作者信息

Greene Jessica C, Whitworth Alexander J, Andrews Laurie A, Parker Tracey J, Pallanck Leo J

机构信息

Department of Genome Sciences, University of Washington, Seattle, WA 98195, USA.

出版信息

Hum Mol Genet. 2005 Mar 15;14(6):799-811. doi: 10.1093/hmg/ddi074. Epub 2005 Feb 2.

Abstract

Loss-of-function mutations of the parkin gene, which encodes a ubiquitin-protein ligase, are a common cause of autosomal recessive juvenile parkinsonism (ARJP). Previous work has led to the identification of a number of Parkin substrates that implicate specific pathways in ARJP pathogenesis, including endoplasmic reticulum (ER) stress and cell cycle activation. To test the involvement of previously implicated pathways, as well as to identify novel pathways in ARJP pathogenesis, we are using genetic and genomic approaches to study Parkin function in the fruit fly Drosophila melanogaster. In previous work, we demonstrated that Drosophila parkin null mutants exhibit mitochondrial pathology and flight muscle degeneration. To further explore the mechanisms responsible for pathology in parkin mutants, we analyzed the transcriptional alterations that occur during muscle degeneration and performed a genetic screen for parkin modifiers. Results of these studies indicate that oxidative stress response components are induced in parkin mutants and that loss-of-function mutations in oxidative stress components enhance the parkin mutant phenotypes. Genes involved in the innate immune response are also induced in parkin mutants. In contrast, our studies did not reveal evidence for cell cycle or ER stress pathway induction in parkin mutants. These results suggest that oxidative stress and/or inflammation may play a fundamental role in the etiology of ARJP.

摘要

编码一种泛素蛋白连接酶的帕金基因的功能丧失突变是常染色体隐性青少年帕金森病(ARJP)的常见病因。先前的研究已鉴定出一些帕金底物,这些底物涉及ARJP发病机制中的特定途径,包括内质网(ER)应激和细胞周期激活。为了测试先前涉及的途径的参与情况,以及确定ARJP发病机制中的新途径,我们正在使用遗传和基因组方法来研究果蝇黑腹果蝇中帕金的功能。在先前的研究中,我们证明果蝇帕金基因敲除突变体表现出线粒体病变和飞行肌退化。为了进一步探索帕金突变体中病变的机制,我们分析了肌肉退化过程中发生的转录变化,并对帕金修饰因子进行了遗传筛选。这些研究结果表明,氧化应激反应成分在帕金突变体中被诱导,并且氧化应激成分的功能丧失突变增强了帕金突变体表型。参与先天免疫反应的基因在帕金突变体中也被诱导。相比之下,我们的研究没有发现帕金突变体中细胞周期或内质网应激途径诱导的证据。这些结果表明,氧化应激和/或炎症可能在ARJP的病因学中起重要作用。

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