UCL Queen Square Institute of Neurology, Queen Square, London, WC1N 3BG, UK.
Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, Chevy Chase, MD 20815, USA.
Mol Omics. 2023 Sep 25;19(8):668-679. doi: 10.1039/d2mo00325b.
Whilst the majority of Parkinson's Disease (PD) cases are sporadic, much of our understanding of the pathophysiological basis of the disease can be traced back to the study of rare, monogenic forms of PD. In the past decade, the availability of genome-wide association studies (GWAS) has facilitated a shift in focus, toward identifying common risk variants conferring increased risk of developing PD across the population. A recent mitophagy screening assay of GWAS candidates has functionally implicated the non-specific lethal (NSL) complex in the regulation of PINK1-mitophagy. Here, a bioinformatics approach has been taken to investigate the proteome of the NSL complex, to unpick its relevance to PD pathogenesis. The NSL interactome has been built, using 3 online tools: PINOT, HIPPIE and MIST, to mine curated, literature-derived protein-protein interaction (PPI) data. We built (i) the 'mitochondrial' NSL interactome exploring its relevance to PD genetics and (ii) the PD-oriented NSL interactome to uncover biological pathways underpinning the NSL/PD association. In this study, we find the mitochondrial NSL interactome to be significantly enriched for the protein products of PD-associated genes, including the Mendelian PD genes and . In addition, we find nuclear processes to be amongst those most significantly enriched within the PD-associated NSL interactome. These findings strengthen the role of the NSL complex in sporadic and familial PD, mediated by both its mitochondrial and nuclear functions.
虽然大多数帕金森病 (PD) 病例是散发性的,但我们对该疾病病理生理基础的大部分理解可以追溯到对罕见的、单基因形式的 PD 的研究。在过去的十年中,全基因组关联研究 (GWAS) 的可用性使得研究重点转向识别常见的风险变异体,这些变异体可以增加人群中患 PD 的风险。最近对 GWAS 候选者进行的线粒体自噬筛选分析在功能上表明非特异性致死 (NSL) 复合物参与调控 PINK1-线粒体自噬。在这里,采用生物信息学方法研究了 NSL 复合物的蛋白质组,以揭示其与 PD 发病机制的相关性。使用 3 个在线工具:PINOT、HIPPIE 和 MIST,构建了 NSL 相互作用组,以挖掘经过精心整理的文献来源的蛋白质-蛋白质相互作用 (PPI) 数据。我们构建了 (i)“线粒体”NSL 相互作用组,以探索其与 PD 遗传学的相关性,以及 (ii)PD 定向 NSL 相互作用组,以揭示支持 NSL/PD 关联的生物学途径。在这项研究中,我们发现线粒体 NSL 相互作用组显著富集了与 PD 相关基因的蛋白质产物,包括孟德尔 PD 基因 和 。此外,我们发现核过程是 PD 相关 NSL 相互作用组中最显著富集的过程之一。这些发现加强了 NSL 复合物在散发性和家族性 PD 中的作用,这是由其线粒体和核功能介导的。