Network Analysis Identifies Disease-Specific Pathways for Parkinson’s Disease

被引:0
作者
Chiara Monti
Ilaria Colugnat
Leonardo Lopiano
Adriano Chiò
Tiziana Alberio
机构
[1] University of Insubria,Laboratory of Biochemistry and Functional Proteomics, Department of Science and High Technology
[2] University of Insubria,Center of Neuroscience
[3] University of Turin,‘Rita Levi Montalcini’ Department of Neuroscience
来源
Molecular Neurobiology | 2018年 / 55卷
关键词
Network analysis; Pathway analysis; Meta-analysis; Parkinson’s disease; Alzheimer’s disease; Amyotrophic lateral sclerosis;
D O I
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中图分类号
学科分类号
摘要
Neurodegenerative diseases are characterized by the progressive loss of specific neurons in selected regions of the central nervous system. The main clinical manifestation (movement disorders, cognitive impairment, and/or psychiatric disturbances) depends on the neuron population being primarily affected. Parkinson’s disease is a common movement disorder, whose etiology remains mostly unknown. Progressive loss of dopaminergic neurons in the substantia nigra causes an impairment of the motor control. Some of the pathogenetic mechanisms causing the progressive deterioration of these neurons are not specific for Parkinson’s disease but are shared by other neurodegenerative diseases, like Alzheimer’s disease and amyotrophic lateral sclerosis. Here, we performed a meta-analysis of the literature of all the quantitative proteomic investigations of neuronal alterations in different models of Parkinson’s disease, Alzheimer’s disease, and amyotrophic lateral sclerosis to distinguish between general and Parkinson’s disease-specific pattern of neurodegeneration. Then, we merged proteomics data with genetics information from the DisGeNET database. The comparison of gene and protein information allowed us to identify 25 proteins involved uniquely in Parkinson’s disease and we verified the alteration of one of them, i.e., transaldolase 1 (TALDO1), in the substantia nigra of 5 patients. By using open-source bioinformatics tools, we identified the biological processes specifically affected in Parkinson’s disease, i.e., proteolysis, mitochondrion organization, and mitophagy. Eventually, we highlighted four cellular component complexes mostly involved in the pathogenesis: the proteasome complex, the protein phosphatase 2A, the chaperonins CCT complex, and the complex III of the respiratory chain.
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页码:370 / 381
页数:11
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[1]  
Przedborski S(2003)Neurodegeneration: what is it and where are we? J Clin Invest 111 3-10
[2]  
Vila M(2015)Molecular diagnostics of neurodegenerative disorders Front Mol Biosci 2 54-24475
[3]  
Jackson-Lewis V(2013)Oxidative stress and neurodegenerative disorders Int J Mol Sci 14 24438-458
[4]  
Agrawal M(2015)Systems biology and gene networks in neurodevelopmental and neurodegenerative disorders Nat Rev Genet 16 441-2066
[5]  
Biswas A(2012)Clinical approach to Parkinson’s disease: features, diagnosis, and principles of management Cold Spring Harb Perspect Med 9 503-691
[6]  
Li J(2016)Evaluation of models of Parkinson’s disease Front Neurosci 373 2055-953
[7]  
O W(2009)Parkinson’s disease Lancet 90 675-801
[8]  
Li W(2016)Understanding dopaminergic cell death pathways in Parkinson disease Neuron 338 949-1231
[9]  
Jiang ZG(2012)Pathological α-synuclein transmission initiates Parkinson-like neurodegeneration in nontransgenic mice Science 31 791-748
[10]  
Ghanbari HA(2016)Lysosomal dysfunction and α-synuclein aggregation in Parkinson’s disease: diagnostic links Mov Disord 136 1219-654