PS membrane asymmetry influences the folding and insertion of a transmembrane helix
PS membrane asymmetry influences the folding and insertion of a transmembrane helix
Abstract The plasma membrane (PM) contains an asymmetric distribution of lipids between the inner and outer leaflets of its bilayer. A lipid of special interest in eukaryotic cells is the negatively charged phosphatidylserine (PS). In healthy cells, PS is actively sequestered to the inner leaflet of the PM but can redistribute to the outer leaflet when the cell is damaged or at the onset of apoptosis. The influence of PS asymmetry and its loss on membrane protein structure and organization have not been widely addressed. Marginally hydrophobic membrane proteins contain acidic residues in their transmembrane sequence, which can enable topological transitions after membrane association. The pH low insertion peptide (pHLIP), which undergoes a topological reorientation and inserts into the membrane at acidic pH – as its name implies, is a useful and well-characterized model for studying these transitions. Although it is known that the inclusion of PS in symmetric vesicles affects the membrane insertion process of pHLIP by lowering the pH midpoint of insertion, it is unclear how PS asymmetry influences these topological transitions. Here, we studied pHLIP’s topology using freely-floating asymmetric phosphatidylcholine (PC)/PS vesicles with PS enriched in the inner leaflet. We developed a modified protocol to create asymmetric vesicles containing PS and employed Annexin V labeled with an Alexa 568 fluorophore as a new probe to quantifying PS asymmetry. For pHLIP, membrane insertion was affected by the surface charge difference between bilayer leaflets caused by the asymmetric distribution of charged lipids between the leaflets. We thus conclude that lipid asymmetry can have consequences for the behavior of membrane-associated proteins. A corollary is that model studies using symmetric bilayers to mimic the PM may fail to capture important aspects of protein-membrane interactions.
Katsaras John、Heberle Frederick A.、Barrera Francisco N.、Scott Haden L.
Shull Wollan Center ?a a Joint Institute for Neutron Sciences||Large Scale Structures Group, Neutron Sciences Directorate, Oak Ridge National Laboratory||Department of Physics and Astronomy, University of Tennessee||Department of Physics, Brock UniversityThe Bredesen Center for Interdisciplinary Research and Graduate Education, University of Tennessee||Shull Wollan Center ?a a Joint Institute for Neutron SciencesDepartment of Biochemistry & Cellular and Molecular Biology, University of TennesseeDepartment of Biochemistry & Cellular and Molecular Biology, University of Tennessee
细胞生物学生物物理学分子生物学
pHLIPmembrane asymmetrymarginally hydrophobic transmembrane proteins
Katsaras John,Heberle Frederick A.,Barrera Francisco N.,Scott Haden L..PS membrane asymmetry influences the folding and insertion of a transmembrane helix[EB/OL].(2025-03-28)[2025-05-14].https://www.biorxiv.org/content/10.1101/454504.点此复制
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