首页> 外文期刊>Frontiers in Cell and Developmental Biology >Exploring the Impact of PARK2 Mutations on the Total and Mitochondrial Proteome of Human Skin Fibroblasts
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Exploring the Impact of PARK2 Mutations on the Total and Mitochondrial Proteome of Human Skin Fibroblasts

机译:探索Park2突变对人体皮肤成纤维细胞总和线粒体蛋白质的影响

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Mutations in PARK2 gene are the most frequent cause of familial forms of Parkinson’s disease (PD). This gene encodes Parkin, an E3 ubiquitin ligase involved in several cellular mechanisms, including mitophagy. Parkin loss-of-function is responsible for the cellular accumulation of damaged mitochondria, which in turn determines an increment of reactive oxygen species (ROS) levels, lower ATP production, and apoptosis activation. Given the importance of mitochondrial dysfunction and mitophagy impairment in PD pathogenesis, the aim of the present study was to investigate both total and mitochondrial proteome alterations in human skin fibroblasts of PARK2- mutated patients. To this end, both total and mitochondria-enriched protein fractions from fibroblasts of five PARK2-mutated patients and five control subjects were analyzed by quantitative shotgun proteomics to identify proteins specifically altered by Parkin mutations (mass spectrometry proteomics data have been submitted to ProteomeXchange with the identifier PXD015880). Both the network-based and gene set enrichment analyses pointed out pathways in which Rab GTPase proteins are involved. To have a more comprehensive view of the mitochondrial alterations due to PARK2 mutations, we investigated the impact of Parkin loss on mitochondrial function and network morphology. We unveiled that the mitochondrial membrane potential was reduced in PARK2-mutated patients, without inducing PINK1 accumulation, even when triggered with the ionophore CCCP. Lastly, the analysis of the mitochondrial network morphology did not reveal any significant alterations in PARK2-mutated patients compared to control subjects. Thus, our results suggested that the network morphology was not influenced by the mitochondrial depolarization and by the lack of Parkin, revealing a possible impairment of fission and, more in general, of mitochondrial dynamics. In conclusion, the present work highlighted new molecular factors and pathways altered by PARK2 mutations, which will unravel possible biochemical pathways altered in the sporadic form of PD.
机译:Park2基因的突变是帕金森病(Pd)的家族形式最常见的原因。该基因编码Parkin,一种涉及几种细胞机制的E3泛素连接酶,包括细胞膜。 Parkin函数丧失负责受损线粒体的细胞积累,这反过来决定了反应性氧(ROS)水平,降低ATP生产和凋亡激活的增量。鉴于线粒体功能障碍和MITOPGAGY损伤在PD发病机制中的重要性,本研究的目的是探讨PARK2-突变患者人体皮肤成纤维细胞的总体和线粒体蛋白质组改变。为此,通过定量霰弹枪蛋白质组学分析来自五个PARK2突变患者的成纤维细胞的总和线粒体富集的蛋白质级分,以鉴定Parkin突变特异性改变的蛋白质(质谱蛋白质组学数据已经提交给Proteomexchange)标识符PXD015880)。基于网络和基因集的富集分析分析涉及RAB GTP酶蛋白的途径。为了更加全面地观察由于Park2突变引起的线粒体改变,我们研究了Parkin损失对线粒体功能和网络形态的影响。我们推出了在Park2突变的患者中减少了线粒体膜电位,而不会诱导粉红色的积聚,即使用离子载体CCCP触发。最后,与对照受试者相比,对线粒体网络形态学的分析并未揭示Park2突变患者的任何显着改变。因此,我们的结果表明,网络形态不受线粒体去极化和缺乏Parkin的影响,揭示了裂变的可能损害,并且更多的线粒体动力学。总之,目前的工作突出了Park2突变改变的新分子因子和途径,这将在Pd的散发形式改变的解开可能的生化途径。

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