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Early-Onset Familial Alzheimer Disease Variant PSEN2 N141I Heterozygosity is Associated with Altered Microglia
Susan Fung1, Carole L Smith1, Katherine E Prater1
1Department of Neurology, University of Washington, Seattle, WA, USA.
Background:
Early-onset familial Alzheimer disease (EOFAD) is caused by heterozygous variants in the presenilin 1 (PSEN1), presenilin 2 (PSEN2), and APP genes. Decades after their discovery, the mechanisms by which these genes cause Alzheimer's disease (AD) or promote AD progression are not fully understood. While it is established that presenilin (PS) enzymatic activity produces amyloid-β (Aβ), PSs also regulate numerous other cellular functions, some of which intersect with known pathogenic drivers of neurodegeneration. Accumulating evidence suggests that microglia, resident innate immune cells in the central nervous system, play a key role in AD neurodegeneration.
Objective:
Previous work has identified a regulatory role for PS2 in microglia. We hypothesized that PSEN2 variants lead to dysregulated microglia, which could further contribute to disease acceleration. To mimic the genotype of EOFAD patients, we created a transgenic mouse expressing PSEN2 N141I on a mouse background expressing one wildtype PS2 and two PS1 alleles.
Results:
Microglial expression of PSEN2 N141I resulted in impaired γ-secretase activity as well as exaggerated inflammatory cytokine release, NFκB activity, and Aβ internalization. In vivo, PS2 N141I mice showed enhanced IL-6 and TREM2 expression in brain as well as reduced branch number and length, an indication of "activated" morphology, in the absence of inflammatory stimuli. LPS intraperitoneal injection resulted in higher inflammatory gene expression in PS2 N141I mouse brain relative to controls.
Conclusion:
Our findings demonstrate that PSEN2 N141I heterozygosity is associated with disrupted innate immune homeostasis, suggesting EOFAD variants may promote disease progression through non-neuronal cells beyond canonical dysregulated Aβ production.
Insights
Presenilin-2 (PSEN2) variants in early-onset familial Alzheimer disease (EOFAD) disrupt microglial immune responses, exacerbating neuroinflammation and disease progression beyond amyloid-beta production.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Early-onset familial Alzheimer disease (EOFAD) is linked to mutations in PSEN1, PSEN2, and APP genes.
- Presenilins (PS) are crucial for gamma-secretase activity producing amyloid-beta (Aβ), but also regulate other cellular functions.
- Microglia, the brain's immune cells, are increasingly recognized for their role in Alzheimer disease (AD) neurodegeneration.
Purpose of the Study:
- To investigate the role of PSEN2 variants in microglial function and their contribution to EOFAD pathogenesis.
- To test the hypothesis that PSEN2 variants lead to microglial dysregulation, accelerating disease progression.
Main Methods:
- Created a transgenic mouse model expressing the EOFAD-associated PSEN2 N141I variant.
- Analyzed microglial γ-secretase activity, inflammatory cytokine release, NFκB activity, and Aβ internalization.
- Assessed in vivo inflammatory responses, gene expression (IL-6, TREM2), and microglial morphology in PSEN2 N141I mice.
Main Results:
- PSEN2 N141I expression in microglia impaired γ-secretase activity and heightened inflammatory responses.
- PSEN2 N141I mice exhibited increased IL-6 and TREM2 expression and altered microglial morphology.
- Mice showed exaggerated inflammatory gene expression following lipopolysaccharide (LPS) challenge.
Conclusions:
- PSEN2 N141I heterozygosity disrupts microglial innate immune homeostasis.
- EOFAD variants may drive disease progression via non-neuronal cells, independent of canonical Aβ production pathways.
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