Omics data integration suggests a potential idiopathic Parkinson’s disease signature

Author:

Zagare Alise,Preciat German,Nickels Sarah. L.,Luo XiORCID,Monzel Anna S.,Gomez-Giro Gemma,Robertson Graham,Jaeger Christian,Sharif Jafar,Koseki HaruhikoORCID,Diederich Nico J.,Glaab EnricoORCID,Fleming Ronan M. T.ORCID,Schwamborn Jens C.ORCID

Abstract

AbstractThe vast majority of Parkinson’s disease cases are idiopathic. Unclear etiology and multifactorial nature complicate the comprehension of disease pathogenesis. Identification of early transcriptomic and metabolic alterations consistent across different idiopathic Parkinson’s disease (IPD) patients might reveal the potential basis of increased dopaminergic neuron vulnerability and primary disease mechanisms. In this study, we combine systems biology and data integration approaches to identify differences in transcriptomic and metabolic signatures between IPD patient and healthy individual-derived midbrain neural precursor cells. Characterization of gene expression and metabolic modeling reveal pyruvate, several amino acid and lipid metabolism as the most dysregulated metabolic pathways in IPD neural precursors. Furthermore, we show that IPD neural precursors endure mitochondrial metabolism impairment and a reduced total NAD pool. Accordingly, we show that treatment with NAD precursors increases ATP yield hence demonstrating a potential to rescue early IPD-associated metabolic changes.

Funder

EC | Horizon 2020 Framework Programme

Fonds National de la Recherche Luxembourg

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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