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Updated: Jun 9, 2025

Author Spotlight: Exploring Sex-Specific Glial Signatures and Therapeutic Leads for Alzheimer's Disease
Published on: May 20, 2024
Effects of brain microRNAs in cognitive trajectory and Alzheimer's disease
Selina M Vattathil1, Sarah Sze Min Tan2, Paul J Kim3
1Department of Neurology, University of California, Davis, 1651 Alhambra Blvd, Suite 200A, Sacramento, CA, 95816, USA.
Abstract:
microRNAs (miRNAs) have a broad influence on gene expression; however, we have limited insights into their contribution to rate of cognitive decline over time or Alzheimer's disease (AD). Given this, we tested associations of 528 miRNAs with cognitive trajectory, AD hallmark pathologies, and AD clinical diagnosis using small RNA sequencing from the dorsolateral prefrontal cortex of 641 community-based donors. We found 311 miRNAs differentially expressed in AD or its endophenotypes after adjusting for technical and sociodemographic variables. Among these, 137 miRNAs remained differentially expressed after additionally adjusting for several co-occurring age-related cerebral pathologies, suggesting that some miRNAs are associated with the traits through co-occurring pathologies while others through mechanisms independent from pathologies. Pathway enrichment analysis of downstream targets of these differentially expressed miRNAs found enrichment in transcription, postsynaptic signalling, cellular senescence, and lipoproteins. In sex-stratified analyses, five miRNAs showed sex-biased differential expression for one or more AD endophenotypes, highlighting the role that sex has in AD. Lastly, we used Mendelian randomization to test whether the identified differentially expressed miRNAs contribute to the cause or are the consequence of the traits. Remarkably, 15 differentially expressed miRNAs had evidence consistent with a causal role, laying the groundwork for future mechanistic studies of miRNAs in AD and its endophenotypes.
Insights
This study reveals microRNAs (miRNAs) are linked to Alzheimer's disease (AD) progression and brain changes. Some miRNAs may causally influence AD, offering new targets for understanding and treating this neurodegenerative disease.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- MicroRNAs (miRNAs) regulate gene expression but their role in Alzheimer's disease (AD) and cognitive decline is not fully understood.
- Limited research exists on miRNA involvement in AD progression and hallmark pathologies.
Purpose of the Study:
- To investigate the association of 528 miRNAs with cognitive trajectory, AD pathologies, and clinical AD diagnosis.
- To explore potential causal roles of differentially expressed miRNAs in AD pathogenesis.
Main Methods:
- Small RNA sequencing was performed on dorsolateral prefrontal cortex samples from 641 community-based donors.
- Statistical analyses adjusted for technical, sociodemographic, and co-occurring age-related cerebral pathologies.
- Mendelian randomization was used to assess causal relationships between miRNAs and AD traits.
Main Results:
- 311 miRNAs were differentially expressed in AD or its endophenotypes.
- 137 miRNAs remained significant after adjusting for co-occurring pathologies, indicating potential independent mechanisms.
- Pathway analysis implicated miRNAs in transcription, synaptic signaling, senescence, and lipoproteins; five miRNAs showed sex-biased expression.
Conclusions:
- Specific miRNAs are differentially expressed in Alzheimer's disease and associated cognitive decline.
- Some miRNAs may play a causal role in AD, independent of other pathologies, suggesting novel therapeutic targets.
- Sex-specific miRNA expression patterns highlight the importance of sex in AD pathogenesis.
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