Dementia Research Centre, UCL, London, WC1N 3AR, UK.
Department of Neurodegenerative Disease, UCL Institute of Neurology, London, WC1B 5EH, UK.
Brain. 2021 Jul 28;144(6):1787-1798. doi: 10.1093/brain/awab084.
The mechanisms responsible for the selective vulnerability of specific neuronal populations in Parkinson's disease are poorly understood. Oxidative stress secondary to brain iron accumulation is one postulated mechanism. We measured iron deposition in 180 cortical regions of 96 patients with Parkinson's disease and 35 control subjects using quantitative susceptibility mapping. We estimated the expression of 15 745 genes in the same regions using transcriptomic data from the Allen Human Brain Atlas. Using partial least squares regression, we then identified the profile of gene transcription in the healthy brain that underlies increased cortical iron in patients with Parkinson's disease relative to controls. Applying gene ontological tools, we investigated the biological processes and cell types associated with this transcriptomic profile and identified the sets of genes with spatial expression profiles in control brains that correlated significantly with the spatial pattern of cortical iron deposition in Parkinson's disease. Gene ontological analyses revealed that these genes were enriched for biological processes relating to heavy metal detoxification, synaptic function and nervous system development and were predominantly expressed in astrocytes and glutamatergic neurons. Furthermore, we demonstrated that the genes differentially expressed in Parkinson's disease are associated with the pattern of cortical expression identified in this study. Our findings provide mechanistic insights into regional selective vulnerabilities in Parkinson's disease, particularly the processes involving iron accumulation.
帕金森病中特定神经元群体易损性的机制尚不清楚。脑铁积累引起的氧化应激是一种推测的机制。我们使用定量磁化率映射测量了 96 名帕金森病患者和 35 名对照者的 180 个皮质区域的铁沉积。我们使用艾伦人类大脑图谱中的转录组数据估计了相同区域中 15745 个基因的表达。然后,我们使用偏最小二乘回归,确定了健康大脑中导致帕金森病患者皮质铁增加的基因转录特征,与对照组相比。应用基因本体论工具,我们研究了与该转录组特征相关的生物学过程和细胞类型,并确定了在对照大脑中具有与帕金森病皮质铁沉积空间模式显著相关的空间表达特征的基因集。基因本体论分析表明,这些基因富含与重金属解毒、突触功能和神经系统发育有关的生物学过程,主要在星形胶质细胞和谷氨酸能神经元中表达。此外,我们证明了在帕金森病中差异表达的基因与本研究中确定的皮质表达模式有关。我们的发现为帕金森病的区域选择性脆弱性提供了机制上的见解,特别是涉及铁积累的过程。