Caudle W Michael, Kitsou Efstathia, Li Jane, Bradner Joshua, Zhang Jing
Department of Pathology, University of Washington School of Medicine, Seattle, WA 98104, United States.
Neurosci Lett. 2009 Jul 31;459(1):11-5. doi: 10.1016/j.neulet.2009.04.060. Epub 2009 May 4.
Although much has been learned in the last few decades concerning the molecular mechanisms and pathways associated with the development of familial as well as sporadic Parkinson disease (PD), the precise mechanisms and specific proteins responsible for mediating these effects remain to be elucidated. Thus, the identification and biological evaluation of novel proteins involved in these pathways is critical to providing a more comprehensive understanding of PD pathogenesis. Previously, in a cellular model of PD, we identified nucleolin as a protein interacting with alpha-synuclein and DJ-1, two critical proteins involved in PD pathogenesis. In our current study, we found the expression levels of nucleolin were dramatically reduced in the substantia nigra pars compacta of human PD subjects, compared with controls. Furthermore, manipulation of nucleolin in an in vitro model of PD resulted in significant alterations in the generation of oxidative stress as well as proteasomal inhibition following rotenone exposure. Interestingly, nucleolin expression did not influence mitochondrial complex I activity, suggesting a selective specificity for oxidative stress and proteasomal pathways.
尽管在过去几十年里,我们已经对家族性和散发性帕金森病(PD)发生发展相关的分子机制和信号通路有了很多了解,但介导这些效应的精确机制和特定蛋白质仍有待阐明。因此,鉴定参与这些信号通路的新蛋白质并对其进行生物学评估,对于更全面地理解PD发病机制至关重要。此前,在一个PD细胞模型中,我们鉴定出核仁素是一种与α-突触核蛋白和DJ-1相互作用的蛋白质,这两种蛋白质是参与PD发病机制的关键蛋白。在我们目前的研究中,我们发现与对照组相比,人类PD患者黑质致密部中核仁素的表达水平显著降低。此外,在PD体外模型中对核仁素进行调控,会导致鱼藤酮暴露后氧化应激的产生以及蛋白酶体抑制发生显著改变。有趣的是,核仁素表达并不影响线粒体复合体I的活性,这表明其对氧化应激和蛋白酶体信号通路具有选择性特异性。