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Updated: Jun 27, 2026

High-Density Lipoprotein-Specific Phospholipid Efflux Assay
Published on: September 30, 2025
Severe HDL deficiency due to novel defects in the ABCA1 transporter
L Pisciotta1, L Bocchi, C Candini
1Department of Internal Medicine, University of Genoa, Genoa, Italy.
Insights
Mutations in the ABCA1 gene cause severe HDL deficiency. Homozygous mutations abolish ABCA1 function, leading to cholesterol accumulation. Compound heterozygotes may retain some function, reducing cholesterol buildup.
Area of Science:
- Genetics
- Molecular Biology
- Biochemistry
Background:
- Severe HDL deficiency is often linked to genetic mutations.
- The ABCA1 gene plays a crucial role in cholesterol metabolism and HDL formation.
- Understanding ABCA1 mutations is key to diagnosing and managing lipid disorders.
Purpose of the Study:
- To identify and functionally characterize mutations in the ABCA1 gene.
- To investigate the impact of these mutations on ABCA1 protein function and cholesterol efflux.
- To correlate genotype with clinical manifestations in patients with severe HDL deficiency.
Main Methods:
- Direct sequencing of the ABCA1 gene.
- Analysis of ABCA1 protein, mRNA, and cholesterol efflux in cultured fibroblasts.
- Investigation of intracellular localization of ABCA1 mutants in transfected HEK293 cells.
Main Results:
- Identified homozygous mutations (p.A1046D, p.I74YFsX76, del p.D1567_K1591) and compound heterozygous mutations (p.R587W/p.W1699C) in the ABCA1 gene.
- Homozygous mutations abolished ABCA1-mediated cholesterol efflux and led to reticulo-endothelial system cholesterol accumulation.
- The p.W1699C mutant showed endoplasmic reticulum retention; other mutants had reduced protein content, suggesting degradation.
Conclusions:
- Complete loss of ABCA1 function due to homozygous mutations results in overt reticulo-endothelial system involvement.
- Partial ABCA1 function in compound heterozygotes may mitigate cholesterol accumulation.
- These findings highlight the critical role of ABCA1 in cholesterol homeostasis and disease pathogenesis.
Objectives:
The objective was the identification and functional characterization of mutations in the ABCA1 gene in four patients with severe HDL deficiency.
Subjects:
Patients were referred to the clinic because of almost complete HDL deficiency.
Methods:
The ABCA1 gene was sequenced directly. The analysis of the ABCA1 protein, ABCA1 mRNA and ABCA1-mediated cholesterol efflux was performed in cultured fibroblasts. Intracellular localization of ABCA1 mutants was investigated in transfected HEK293 cells.
Results:
Two patients were homozygous for mutations in the coding region of the ABCA1 gene, resulting in an amino acid substitution (p.A1046D) and a truncated protein (p.I74YFsX76). The third patient was homozygous for a splice site mutation in intron 35 (c.4773 + 1g>a), resulting in an in-frame deletion of 25 amino acids (del p.D1567_K1591) in ABCA1. These patients had clinical manifestations of accumulation of cholesterol in the reticulo-endothelial system. The fourth patient, with preclinical atherosclerosis, was a compound heterozygote for two missense mutations (p.R587W/p.W1699C). ABCA1-mediated cholesterol efflux was abolished in fibroblasts from patients with p.A1046D and del p.D1567_K1591 mutants and in fibroblasts homozygous for p.R587W. A reduced ABCA1 protein content was observed in these cells, suggesting an increased intracellular degradation. The mutant p.W1699C was largely retained in the endoplasmic reticulum, when expressed in HEK293 cells.
Conclusions:
The homozygotes for mutations which abolish ABCA1 function showed overt signs of involvement of the reticulo-endothelial system. This was not the case in the compound heterozygote for missense mutations, suggesting that this patient retains some residual ABCA1 function that reduces cholesterol accumulation in the reticulo-endothelial system.
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