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Altered microglial response to Aβ plaques in APPPS1-21 mice heterozygous for TREM2
Jason D Ulrich, Mary Beth Finn, Yaming Wang
1Department of Neurology, Washington University School of Medicine, Saint Louis, Missouri 63110, USA. holtzman@neuro.wustl.edu.
Background:
Recent genome-wide association studies linked variants in TREM2 to a strong increase in the odds of developing Alzheimer's disease. The mechanism by which TREM2 influences the susceptibility to Alzheimer's disease is currently unknown. TREM2 is expressed by microglia and is thought to regulate phagocytic and inflammatory microglial responses to brain pathology. Given that a single allele of variant TREM2, likely resulting in a loss of function, conferred an increased risk of developing Alzheimer's disease, we tested whether loss of one functional trem2 allele would affect Aβ plaque deposition or the microglial response to Aβ pathology in APPPS1-21 mice.
Results:
There was no significant difference in Aβ deposition in 3-month old or 7-month old APPPS1-21 mice expressing one or two copies of trem2. However, 3-month old mice with one copy of trem2 exhibited a marked decrease in the number and size of plaque-associated microglia. While there were no statistically significant differences in cytokine levels or markers of microglial activation in 3- or 7-month old animals, there were trends towards decreased expression of NOS2, C1qa, and IL1a in 3-month old TREM2+/- vs. TREM2+/+ mice.
Conclusions:
Loss of a single copy of trem2 had no effect on Aβ pathology, but altered the morphological phenotype of plaque-associated microglia. These data suggest that TREM2 is important for the microglial response to Aβ deposition but that a 50% decrease inTREM2 expression does not affect Aβ plaque burden.
Insights
Reduced TREM2 (triggering receptor expressed on myeloid cells 2) function in mice did not alter Alzheimer's disease amyloid plaque pathology. However, it did impact the microglial cell response around plaques.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Genome-wide association studies link TREM2 variants to increased Alzheimer's disease (AD) risk.
- TREM2 is expressed by microglia and modulates their response to brain pathology.
- The precise role of TREM2 in AD pathogenesis remains unclear.
Purpose of the Study:
- To investigate the impact of reduced TREM2 function on amyloid-beta (Aβ) plaque deposition and microglial responses in a mouse model of AD.
- To determine if a loss of one functional TREM2 allele affects AD pathology.
Main Methods:
- Utilized APPPS1-21 transgenic mice with one (TREM2+/-) or two (TREM2+/+) functional copies of the Trem2 gene.
- Assessed Aβ plaque deposition and characterized plaque-associated microglia at 3 and 7 months of age.
- Analyzed microglial activation markers and cytokine levels.
Main Results:
- No significant difference in Aβ plaque burden was observed between TREM2+/- and TREM2+/+ mice at either time point.
- TREM2+/- mice showed a significant reduction in the number and size of microglia surrounding Aβ plaques at 3 months.
- Trends towards decreased expression of NOS2, C1qa, and IL1a were noted in TREM2+/- mice at 3 months.
Conclusions:
- Loss of one TREM2 allele does not affect Aβ plaque pathology in APPPS1-21 mice.
- TREM2 is crucial for the appropriate microglial morphological response to Aβ deposition.
- A 50% reduction in TREM2 expression alters microglial phenotype without impacting overall plaque load.
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