Creation of Lipid Partitions by Deposition of Amphipathic Viral Peptides
- 6 September 2007
- journal article
- Published by American Chemical Society (ACS) in Langmuir
- Vol. 23 (21) , 10855-10863
- https://doi.org/10.1021/la700640h
Abstract
Phospholipid vesicles exhibit a natural characteristic to fuse and reform into a continuous single bilayer membrane on hydrophilic solid substrates such as glass, mica, and silica. The resulting solid-supported bilayer mimics physiological tendencies such as lipid flip−flop and lateral mobility. The lateral mobility of fluorescently labeled lipids fused into solid-supported bilayers is found to change upon deposition on the membrane surface of an amphipathic α-helical peptide (AH) derived from the hepatitis C virus (HCV) NS5A protein. The binding of the AH peptide to a phospholipid bilayer, with the helical axis parallel to the bilayer, leads to immobilization of the bilayer. We used AFM to better understand the mechanistic details of this specific interaction, and determined that the diminished fluidity of the bilayer is due to membrane thinning. Utilizing this specific interaction between AH peptides and lipid molecules, we demonstrate a novel process for the creation of lipid partition by employing AH peptides as agents to immobilize lipid molecules, thus creating a patterned solid support with partition-defined areas of freely mobile lipid bilayers. This architecture could have a wide range of applications in novel sensing, biotechnology, high-throughput screening, and biomimetic strategies.Keywords
This publication has 29 references indexed in Scilit:
- Asymmetric Distribution of Phosphatidyl Serine in Supported Phospholipid Bilayers on Titanium DioxideLangmuir, 2006
- Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the Surface of a Medically Relevant MaterialLangmuir, 2005
- Structure and Function of the Membrane Anchor Domain of Hepatitis C Virus Nonstructural Protein 5AJournal of Biological Chemistry, 2004
- Molecular Mechanism of Peptide-Induced Pores in MembranesPhysical Review Letters, 2004
- A Novel Lytic Peptide Composed of dl-Amino Acids Selectively Kills Cancer Cells in Culture and in MiceJournal of Biological Chemistry, 2003
- Amphipathic Helix-Dependent Localization of NS5A Mediates Hepatitis C Virus RNA ReplicationJournal of Virology, 2003
- Exploring Peptide Membrane Interaction Using Surface Plasmon Resonance: Differentiation between Pore Formation versus Membrane Disruption by Lytic PeptidesBiochemistry, 2002
- From “carpet” mechanism to de-novo designed diastereomeric cell-selective antimicrobial peptidesPeptides, 2001
- Membrane thinning caused by magainin 2Biochemistry, 1995
- The nature of the hydrophobic binding of small peptides at the bilayer interface: implications for the insertion of transbilayer helicesBiochemistry, 1989