A Toxicogenic Interaction between Intracellular Amyloid-β and Apolipoprotein-E.
Arpan DeyAditi VermaUchit BhaskarBidyut SarkarMamata KallianpurVicky VishvakarmaAnand Kant DasKanchan GaraiOdity MukherjeeKunihiko IshiiTahei TaharaSudipta MaitiPublished in: ACS chemical neuroscience (2024)
Alzheimer's disease (AD) is associated with the aggregation of amyloid β (Aβ) and tau proteins. Why ApoE variants are significant genetic risk factors remains a major unsolved puzzle in understanding AD, although intracellular interactions with ApoE are suspected to play a role. Here, we show that specific changes in the fluorescence lifetime of fluorescently tagged small Aβ oligomers in rat brain cells correlate with the cellular ApoE content. An inhibitor of the Aβ-ApoE interaction suppresses these changes and concomitantly reduces Aβ toxicity in a dose-dependent manner. Single-molecule techniques show changes both in the conformation and in the stoichiometry of the oligomers. Neural stem cells derived from hiPSCs of Alzheimer's patients also exhibit these fluorescence lifetime changes. We infer that intracellular interaction with ApoE modifies the N-terminus of the Aβ oligomers, inducing changes in their stoichiometry, membrane affinity, and toxicity. These changes can be directly imaged in live cells and can potentially be used as a rapid and quantitative cellular assay for AD drug discovery.
Keyphrases
- cognitive decline
- single molecule
- high fat diet
- induced apoptosis
- mild cognitive impairment
- drug discovery
- risk factors
- cell cycle arrest
- end stage renal disease
- oxidative stress
- neural stem cells
- reactive oxygen species
- atomic force microscopy
- chronic kidney disease
- newly diagnosed
- signaling pathway
- ejection fraction
- copy number
- cell death
- type diabetes
- high throughput
- mass spectrometry
- energy transfer
- genome wide
- pulmonary embolism
- molecular dynamics simulations
- skeletal muscle
- pi k akt
- patient reported
- quantum dots
- sensitive detection
- loop mediated isothermal amplification