top of page

Microglial mTOR Activation Upregulates Trem2 and Enhances β-Amyloid Plaque Clearance in the 5XFAD Alzheimer's Disease Model

Contact Information

Keywords

Manzoor A. Bhat, bhatm@uthscsa.edu

Alzheimer's disease, microglia, β-amyloid, mTOR, Trem2, rapamycin

Abstract

The mechanistic target of rapamycin (mTOR) signaling pathway plays a major role in key cellular processes including metabolism and differentiation; however, the role of mTOR in microglia and its importance in Alzheimer's disease (AD) have remained largely uncharacterized. We report that selective loss of Tsc1, a negative regulator of mTOR, in microglia in mice of both sexes, caused mTOR activation and upregulation of Trem2 with enhanced β-Amyloid (Aβ) clearance, reduced spine loss, and improved cognitive function in the 5XFAD AD mouse model. Combined loss of Tsc1 and Trem2 in microglia led to reduced Aβ clearance and increased Aβ plaque burden revealing that Trem2 functions downstream of mTOR. Tsc1 mutant microglia showed increased phagocytosis with upregulation of CD68 and Lamp1 lysosomal proteins. In vitro studies using Tsc1-deficient microglia revealed enhanced endocytosis of the lysosomal tracker indicator Green DND-26 suggesting increased lysosomal activity. Incubation of Tsc1-deficient microglia with fluorescent-labeled Aβ revealed enhanced Aβ uptake and clearance, which was blunted by rapamycin, an mTOR inhibitor. In vivo treatment of mice of relevant genotypes in the 5XFAD background with rapamycin, affected microglial activity, decreased Trem2 expression and reduced Aβ clearance causing an increase in Aβ plaque burden. Prolonged treatment with rapamycin caused even further reduction of mTOR activity, reduction in Trem2 expression, and increase in Aβ levels. Together, our findings reveal that mTOR signaling in microglia is critically linked to Trem2 regulation and lysosomal biogenesis, and that the upregulation of Trem2 in microglia through mTOR activation could be exploited toward better therapeutic avenues to Aβ-related AD pathologies.

Citation

Shi, Q., Chang, C., Saliba, A., & Bhat, M. A. (2022). Microglial mTOR Activation Upregulates Trem2 and Enhances β-Amyloid Plaque Clearance in the 5XFAD Alzheimer’s Disease Model. The Journal of Neuroscience, 42(27), 5294–5313. https://doi.org/10.1523/jneurosci.2427-21.2022

DOI

10.1523/JNEUROSCI.2427-21.2022

EWB Constructs:

homeostasis

EWB Measures:

morris water maze

data availability:

No

data availability details:

N/A

brain imaging paradigm:

hippocampus

brain region/circuit:

Exclusion Criteria:

N/A

Inclusion Criteria

N/A

Non-EWB Behavioral
Measures:

N/A

First author:

Qian Shi

species:

mouse

sample size:

N/A

study design:

case control

longitudinal data?

No

younger controls?

N/A

interventions:

Manipulated mTOR signaling pathway and examined effects on microglia and amyloid-beta clearance in AD mice

study population:

N/A

sex (% female):

50%

ethnicity (%white)

N/A

Age (mean, sd):

2-7 months

biological/Physiological Measures:

(2) inflammation

universities.png
  • Twitter

255 Crittenden Blvd. Rochester, NY

© 2021 University of Rochester Medical Center

bottom of page