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Disrupted lipid homeostasis as a pathogenic mechanism in ABCA7‐associated Alzheimer's disease risk
Journal article   Open access   Peer reviewed

Disrupted lipid homeostasis as a pathogenic mechanism in ABCA7‐associated Alzheimer's disease risk

Younji Nam, Brooke A DeRosa, Aura M Ramirez, Biniyam A Ayele, Patrice Whitehead-Gay, Larry D Adams, Charles G Golightly, Takiyah D Starks, Mayra Juliana Laverde-Paz, Holly N Cukier, …
Alzheimer's & dementia, Vol.22(4), e71312
2026-04-01
PMID: 41912785

Abstract

Accumulation Alzheimer's disease Apolipoproteins Health risk assessment Homeostasis Lipids Localization Proteins Risk Risk factors Systematic review Disease Metabolism Mutation Neurons Pathogenesis Pathology Plasmids Stem Cells
INTRODUCTION ABCA7 (ATP binding cassette subfamily A member 7) encodes a lipid transporter associated with increasing risk for Alzheimer's disease (AD). A 44-base pair deletion in ABCA7 (rs142076058; p.Arg578Alafs) is a strong risk factor in individuals of African ancestry (AA). However, the biological consequences of this deletion are poorly understood. METHODS We expressed the truncated ABCA7 protein in HEK and HepG2 cells to assess cellular localization and impact on lipid metabolism, respectively. Additionally, induced pluripotent stem cell (iPSC)-derived neurons carrying the deletion were functionally assessed compared to isogenic controls. RESULTS Truncated ABCA7 localized to endoplasmic reticulum and plasma membranes similarly to the wild type in HEK cells but induced significant lipid droplet accumulation in HepG2 cells and iPSC-derived neurons while reducing mitochondrial membrane potential in iPSC-derived neurons. DISCUSSION These findings show that the AA-specific ABCA7 deletion disrupts lipid and mitochondrial homeostasis, supporting a mechanistic link between the ABCA7 deletion and increased AD risk.
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Collaboration types
Domestic collaboration
International collaboration
Citation topics
1 Clinical & Life Sciences
1.52 Neurodegenerative Diseases
1.52.57 Alzheimer's Mechanisms
Web Of Science research areas
Clinical Neurology
ESI research areas
Neuroscience & Behavior

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