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Kurti, A.

Publications and source records attributed to Kurti, A..

2 recordsLinked to original sources

TREM2-H157Y Increases Soluble TREM2 Production and Reduces Amyloid Pathology

The p.H157Y variant of TREM2 (Triggering Receptor Expressed on Myeloid Cells 2) has been reported to increase Alzheimers disease (AD) risk. This mutation in the extracellular domain of TREM2 localizes at the cleavage site, leading to enhanced shedding. Here, we generated a novel Trem2 H157Y knock-in mouse model to investigate how this H157Y mutation impacts TREM2 proteolytic processing, synaptic function, and AD-related amyloid pathology. Consistent with previous in vitro findings, TREM2-H157Y increases the amount of soluble TREM2 (sTREM2) in the cortex and serum of mutant mice compared to the wild type controls. Interestingly, the Trem2 H157Y variant enhances synaptic plasticity without affecting microglial density and morphology. In the presence of amyloid pathology, TREM2-H157Y surprisingly accelerates A{beta} clearance and reduces amyloid burden and microgliosis. Taken together, our findings support a beneficial effect of the Trem2 H157Y mutation in synaptic function and in mitigating amyloid pathology. Considering the genetic association of TREM2 p.H157Y with AD, we speculate TREM2-H157Y might increase AD risk through an amyloid-independent pathway, as such its effects on tauopathy and neurodegeneration merit further investigation.

neuroscience

APOE2 promotes longevity independent of Alzheimer's disease

ObjectiveAlthough apolipoprotein E (APOE) allele associates with longevity, its mechanism is not understood. The protective effects of APOE2 and the deleterious effects of APOE4 on Alzheimers disease (AD) risk may confound APOE effects on longevity. MethodsWe analyzed a large number of subjects from the National Alzheimers Coordinating Center (NACC), and animal models expressing human apoE isoforms in the absence of AD. ResultsClinically, the APOE2 allele was associated with longer lifespan, while APOE4 associated with shorter lifespan, compared to the common APOE3 allele. This effect was also seen irrespective of clinical AD status, and in subjects with little amyloid pathology or after adjustment for AD-related pathologies. In animal studies, apoE2-TR mice also exhibited longer lifespan, while apoE4 showed some trends of shorter lifespan. Notably, old apoE2-TR mice kept activity measured by open field assay, associated with longer lifespan. Evidence of preserved activity in APOE2 carrier was also obtained in clinical records. In animal studies, higher levels of apoE2 in brain and plasma were correlated with activity. Moreover, lower levels of total cholesterol in the brain and higher levels of high-density lipoprotein cholesterol and triglycerides in the plasma of apoE2-TR mice were associated with apoE levels and more activity. InterpretationAPOE2 can contribute to longevity independent of AD. Preserved activity would be an early-observable feature of apoE2-mediated longevity, where higher levels of apoE2 and its-associated lipid metabolism might be involved.

neuroscience