AI Article Synopsis

  • The study explored how the lipid polar headgroup influences the interaction between melittin and phospholipids using various analytical techniques.
  • The research focused on how these headgroup properties affected melittin's adsorption to and penetration into lipid bilayers, impacting the stability of large unilamellar liposomes.
  • It was found that increasing the negative charge of the bilayer enhances tolerance to melittin, while certain headgroups like inositol can reduce this tolerance, leading to structural destabilization and leakage in liposomes.

Article Abstract

The effect of the lipid polar headgroup on melittin-phospholipid interaction was investigated by cryo-TEM, fluorescence spectroscopy, ellipsometry, circular dichroism, electrophoresis and photon correlation spectroscopy. In particular, focus was placed on the effect of the lipid polar headgroup on peptide adsorption to, and penetration into, the lipid bilayer, as well as on resulting colloidal stability effects for large unilamellar liposomes. The effect of phospholipid headgroup properties on melittin-bilayer interaction was addressed by comparing liposomes containing phosphatidylcholine, -acid, and -inositol at varying ionic strength. Increasing the bilayer negative charge leads to an increased liposome tolerance toward melittin which is due to an electrostatic arrest of melittin at the membrane interface. Balancing the electrostatic attraction between the melittin positive charges and the phospholipid negative charges through a hydration repulsion, caused by inositol, reduced this surface arrest and increased liposome susceptibility to the disruptive actions of melittin. Furthermore, melittin was demonstrated to induce liposome structural destabilization on a colloidal scale which coincided with leakage induction for both anionic and zwitterionic systems. The latter findings thus clearly show that coalescence, aggregation, and fragmentation contribute to melittin-induced liposome leakage, and that detailed molecular analyses of melittin pore formation are incomplete without considering also these colloidal aspects.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jcis.2007.02.070DOI Listing

Publication Analysis

Top Keywords

lipid polar
8
polar headgroup
8
increased liposome
8
melittin
7
lipid
5
lipid headgroup
4
headgroup composition
4
composition interaction
4
interaction melittin
4
melittin lipid
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!