학술논문

Embedding Aβ42 in Heterogeneous Membranes Depends on Cholesterol Asymmetries
Document Type
article
Source
Biophysical Journal. 105(4)
Subject
Biochemistry and Cell Biology
Biological Sciences
Brain Disorders
Neurodegenerative
Alzheimer's Disease
Dementia
Aging
Acquired Cognitive Impairment
Alzheimer's Disease including Alzheimer's Disease Related Dementias (AD/ADRD)
1.1 Normal biological development and functioning
Underpinning research
Amyloid beta-Peptides
Animals
Cell Membrane
Cholesterol
Diffusion
Lipid Bilayers
Mice
Models
Molecular
Peptide Fragments
Protein Conformation
Synapses
Thermodynamics
Physical Sciences
Chemical Sciences
Biophysics
Biological sciences
Chemical sciences
Physical sciences
Language
Abstract
Using a coarse-grained lipid and peptide model, we show that the free energy stabilization of amyloid-β in heterogeneous lipid membranes is predicted to have a dependence on asymmetric distributions of cholesterol compositions across the membrane leaflets. We find that a highly asymmetric cholesterol distribution that is depleted on the exofacial leaflet but enhanced on the cytofacial leaflet of the model lipid membrane thermodynamically favors membrane retention of a fully embedded Aβ peptide. However, in the case of cholesterol redistribution that increases concentration of cholesterol on the exofacial layer, typical of aging or Alzheimer's disease, the free energy favors peptide extrusion of the highly reactive N-terminus into the extracellular space that may be vulnerable to aggregation, oligomerization, or deleterious oxidative reactivity.