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Interaction of A2E with model membranes. Implications to the pathogenesis of age-related macular degeneration
1Howard Hughes Medical Institute, Laboratory of Molecular Biology and Biochemistry, The Rockefeller University, New York, NY 10021, USA.
Abstract:
Deposition of a fluorophoric material, known as lipofuscin, in retinal pigment epithelium cells has been speculated to be one of the biomarkers of age-related macular degeneration. One of the fluorophores of lipofuscin has been characterized as A2E, a pyridinium bisretinoid. Its cationic nature along with two hydrophobic retinal chains suggests that it can disrupt the membrane integrity by its detergent-like activity and can thus cause cellular damage. With this notion, we studied in detail the interaction between A2E and the model membranes of different lipid compositions using fluorescence steady-state and fluorescence anisotropy measurements. A transition from vesicular to micellar structure occurred upon incorporation of A2E into the lipid bilayer. However, the A2E concentration at which this transition occurred depends on the lipid composition. A lipid mixture containing 10% phosphatidylserine (PS) (close to disc membrane PS content) behaved similarly to a lipid mixture having no PS. In contrast, vesicles containing 20% PS showed significantly different behavior. Membrane solubilization by A2E was also confirmed by vesicle leakage experiments. A2E also showed significant activity in liposome-mediated gene transfection. A lipid formulation containing 40% A2E and a helper lipid showed plasmid DNA transfection efficiency comparable to commercially available transfection reagents with no evidence of cytotoxicity. These results contribute to understanding the mechanism underlying the A2E-induced cellular dysfunction.
Insights
A2E, a lipofuscin fluorophore, disrupts cell membranes, potentially causing age-related macular degeneration. Researchers studied A2E
Area of Science:
- Biochemistry
- Cell Biology
- Ophthalmology
Background:
- Lipofuscin accumulation in retinal pigment epithelium is linked to age-related macular degeneration.
- A2E, a lipofuscin fluorophore, is a pyridinium bisretinoid with detergent-like properties.
- A2E's interaction with cell membranes may cause cellular damage.
Purpose of the Study:
- To investigate the interaction between A2E and model lipid membranes.
- To understand how lipid composition affects A2E's membrane-disrupting activity.
- To evaluate A2E's potential in liposome-mediated gene delivery.
Main Methods:
- Fluorescence steady-state and anisotropy measurements.
- Vesicle leakage experiments.
- Liposome-mediated gene transfection assays.
Main Results:
- A2E induced a transition from vesicular to micellar structures in lipid bilayers.
- The concentration of A2E required for this transition varied with lipid composition, particularly phosphatidylserine (PS) content.
- A2E formulations demonstrated efficient and non-cytotoxic gene transfection capabilities.
Conclusions:
- A2E's membrane interaction and structural transition are dependent on lipid composition.
- A2E exhibits potential as a non-toxic gene delivery agent.
- Understanding A2E's mechanism is crucial for age-related macular degeneration research.