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Common signatures of differential microRNA expression in Parkinson's and Alzheimer's disease brains
Valerija Dobricic1, Marcel Schilling1, Ildiko Farkas2
1Lübeck Interdisciplinary Platform for Genome Analytics (LIGA), University of Lübeck, 23562 Lübeck, Germany.
Abstract:
Dysregulation of microRNA gene expression has been implicated in many neurodegenerative diseases, including Parkinson's disease. However, the individual dysregulated microRNAs remain largely unknown. Previous meta-analyses have highlighted several microRNAs being differentially expressed in post-mortem Parkinson's disease and Alzheimer's disease brains versus controls, but they were based on small sample sizes. In this study, we quantified the expression of the most compelling Parkinson's and Alzheimer's disease microRNAs from these meta-analyses ('candidate miRNAs') in one of the largest Parkinson's/Alzheimer's disease case-control post-mortem brain collections available (n = 451), thereby quadruplicating previously investigated sample sizes. Parkinson's disease candidate microRNA hsa-miR-132-3p was differentially expressed in our Parkinson's (P = 4.89E-06) and Alzheimer's disease samples (P = 3.20E-24) compared with controls. Alzheimer's disease candidate microRNAs hsa-miR-132-5p (P = 4.52E-06) and hsa-miR-129-5p (P = 0.0379) were differentially expressed in our Parkinson's disease samples. Combining these novel data with previously published data substantially improved the statistical support (α = 3.85E-03) of the corresponding meta-analyses, clearly implicating these microRNAs in both Parkinson's and Alzheimer's disease. Furthermore, hsa-miR-132-3p/-5p (but not hsa-miR-129-5p) showed association with α-synuclein neuropathological Braak staging (P = 3.51E-03/P = 0.0117), suggesting that hsa-miR-132-3p/-5p play a role in α-synuclein aggregation beyond the early disease phase. Our study represents the largest independent assessment of recently highlighted candidate microRNAs in Parkinson's and Alzheimer's disease brains, to date. Our results implicate hsa-miR-132-3p/-5p and hsa-miR-129-5p to be differentially expressed in both Parkinson's and Alzheimer's disease, pinpointing shared pathogenic mechanisms across these neurodegenerative diseases. Intriguingly, based on publicly available high-throughput sequencing of RNA isolated by cross-linking immunoprecipitation data, hsa-miR-132 may interact with SNCA messenger RNA in the human brain, possibly pinpointing novel therapeutic approaches in fighting Parkinson's disease.
Insights
MicroRNAs hsa-miR-132 and hsa-miR-129 are differentially expressed in Parkinson's and Alzheimer's disease brains, suggesting shared mechanisms. Hsa-miR-132 may influence alpha-synuclein aggregation, offering potential therapeutic targets.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- MicroRNA (miRNA) gene expression dysregulation is linked to neurodegenerative diseases like Parkinson's disease (PD) and Alzheimer's disease (AD).
- Previous studies identified candidate miRNAs but were limited by small sample sizes.
- A comprehensive assessment of these candidate miRNAs in large post-mortem brain cohorts is needed.
Purpose of the Study:
- To quantify the expression of compelling Parkinson's disease and Alzheimer's disease candidate microRNAs in a large case-control post-mortem brain collection.
- To validate previously identified differentially expressed microRNAs and explore their association with neuropathological staging.
- To identify shared pathogenic mechanisms and potential therapeutic targets in PD and AD.
Main Methods:
- Quantified expression of candidate microRNAs (hsa-miR-132-3p, hsa-miR-132-5p, hsa-miR-129-5p) in 451 post-mortem brain samples (PD, AD, and controls).
- Performed statistical analyses to compare miRNA expression between disease groups and controls.
- Assessed the association of differentially expressed miRNAs with alpha-synuclein neuropathological Braak staging.
- Analyzed publicly available cross-linking immunoprecipitation data to investigate miRNA-mRNA interactions.
Main Results:
- Hsa-miR-132-3p was significantly differentially expressed in both PD (P = 4.89E-06) and AD (P = 3.20E-24) brains compared to controls.
- Hsa-miR-132-5p (P = 4.52E-06) and hsa-miR-129-5p (P = 0.0379) were differentially expressed in PD brains.
- Combined data strengthened meta-analyses, implicating these miRNAs in both PD and AD.
- Hsa-miR-132-3p/-5p associated with alpha-synuclein Braak staging (P = 3.51E-03/P = 0.0117), suggesting a role beyond early disease stages.
- Potential interaction between hsa-miR-132 and SNCA mRNA was identified.
Conclusions:
- Hsa-miR-132-3p/-5p and hsa-miR-129-5p are differentially expressed in both Parkinson's and Alzheimer's disease, indicating shared pathological pathways.
- Hsa-miR-132 may play a role in alpha-synuclein aggregation, presenting a potential therapeutic target for Parkinson's disease.
- This study provides the largest independent assessment of candidate miRNAs in PD and AD brains to date.
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