Membrane thickness and the mechanism of action of the short peptaibol trichogin GA IV
-
Add time:08/29/2019 Source:sciencedirect.com
Trichogin GA IV (GAIV) is an antimicrobial peptide of the peptaibol family, like the extensively studied alamethicin (Alm). GAIV acts by perturbing membrane permeability. Previous data have shown that pore formation is related to GAIV aggregation and insertion in the hydrophobic core of the membrane. This behavior is similar to that of Alm and in agreement with a barrel-stave mechanism, in which transmembrane oriented peptides aggregate to form a channel. However, while the 19-amino acid long Alm has a length comparable to the membrane thickness, GAIV comprises only 10 amino acids, and its helix is about half the normal bilayer thickness. Here, we report the results of neutron reflectivity measurements, showing that GAIV inserts in the hydrophobic region of the membrane, causing a significant thinning of the bilayer. Molecular dynamics simulations of GAIV/membrane systems were also performed. For these studies we developed a novel approach for constructing the initial configuration, by embedding the short peptide in the hydrophobic core of the bilayer. These calculations indicated that in the transmembrane orientation GAIV interacts strongly with the polar phospholipid headgroups, drawing them towards its N- and C-termini, inducing membrane thinning and becoming able to span the bilayer. Finally, vesicle leakage experiments demonstrated that GAIV activity is significantly higher with thinner membranes, becoming similar to that of Alm when the bilayer thickness is comparable to its size. Overall, these data indicate that a barrel-stave mechanism of pore formation might be possible for GAIV and for similarly short peptaibols despite their relatively small size.
We also recommend Trading Suppliers and Manufacturers of trichogin A IV (cas 138531-93-8). Pls Click Website Link as below: cas 138531-93-8 suppliers
Prev:Molecular resolution visualization of a pore formed by trichogin, an antimicrobial peptide, in a phospholipid matrix
Next:Ion transport across a phospholipid membrane mediated by the peptide trichogin GA IV) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Aggregation and Water-Membrane Partition as Major Determinants of the Activity of the Antibiotic Peptide Trichogin GA IV09/02/2019
- Location and Aggregation of the Spin-Labeled Peptide Trichogin GA IV in a Phospholipid Membrane as Revealed by Pulsed EPR09/01/2019
- Mechanism of Membrane Activity of the Antibiotic Trichogin GA IV: A Two-State Transition Controlled by Peptide Concentration08/31/2019
- Ion transport across a phospholipid membrane mediated by the peptide trichogin GA IV08/30/2019
- Molecular resolution visualization of a pore formed by trichogin, an antimicrobial peptide, in a phospholipid matrix08/28/2019
- Probing membrane permeabilization by the antibiotic lipopeptaibol trichogin GA IV in a tethered bilayer lipid membrane08/27/2019
- Data articleComparison of bactericidal and cytotoxic activities of trichogin analogs08/26/2019
- The peculiar N- and C-termini of trichogin GA IV are needed for membrane interaction and human cell death induction at doses lacking antibiotic activity08/25/2019
- Peptide antibiotic trichogin in model membranes: Self-association and capture of fatty acids08/24/2019


