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The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers
- Source :
- Adam, C, Peters, A D, Lizio, M G, Whitehead, G F, Diemer, V, Cooper, J, Cockroft, S, Clayden, J & Webb, S J 2017, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry-A European Journal . https://doi.org/10.1002/chem.201705299, Adam, C, Peters, A, Lizio, M G, Whitehead, G, Diemer, V, Cooper, J, Cockroft, S L, Clayden, J & Webb, S 2018, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry: A European Journal . https://doi.org/10.1002/chem.201705299, Adam, C, Peters, A D, Lizio, M G, Whitehead, G F S, Diemer, V, Cooper, J A, Cockroft, S L, Clayden, J & Webb, S J 2018, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry-A European Journal, pp. 2249-2256 . https://doi.org/10.1002/chem.201705299
- Publication Year :
- 2017
-
Abstract
- Peptaibols are peptide antibiotics that typically feature an N-terminal acetyl cap, a C-terminal aminoalcohol, and a high proportion of α-aminoisobutyric acid (Aib) residues. To establish how each feature might affect the membrane-activity of peptaibols, biomimetic Aib foldamers with different lengths and terminal groups were synthesised. Vesicle assays showed that long foldamers (eleven Aib residues) with hydrophobic termini had the highest ionophoric activity. C-terminal acids or primary amides inhibited activity, while replacement of an N-terminal acetyl with an azide group made little difference. Crystallography showed that N3Aib11CH2OTIPS folded into a 310 helix 2.91nm long, which is close to the bilayer hydrophobic width. Planar bilayer conductance assays showed discrete ion channels only for N-acetylated foldamers. However long foldamers with hydrophobic termini had the highest antibacterial activity, indicating that ionophoric activity in vesicles was a better indicator of antibacterial activity than the observation of discrete ion channels.
- Subjects :
- Aminoisobutyric Acids
Stereochemistry
Lipid Bilayers
Molecular Conformation
Peptaibol
Peptide
Foldamers
Crystallography, X-Ray
Gram-Positive Bacteria
010402 general chemistry
01 natural sciences
Catalysis
chemistry.chemical_compound
Antibiotics
310 helix
Manchester Institute of Biotechnology
Gram-Negative Bacteria
Alamethicin
Ion channel
Peptaibols
chemistry.chemical_classification
010405 organic chemistry
Chemistry
Biological activity
Bilayer
Vesicle
Organic Chemistry
Fungi
General Chemistry
ResearchInstitutes_Networks_Beacons/manchester_institute_of_biotechnology
Anti-Bacterial Agents
0104 chemical sciences
Ion channels
Liposomes
Azide
Peptides
Antibacterial activity
Hydrophobic and Hydrophilic Interactions
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Adam, C, Peters, A D, Lizio, M G, Whitehead, G F, Diemer, V, Cooper, J, Cockroft, S, Clayden, J & Webb, S J 2017, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry-A European Journal . https://doi.org/10.1002/chem.201705299, Adam, C, Peters, A, Lizio, M G, Whitehead, G, Diemer, V, Cooper, J, Cockroft, S L, Clayden, J & Webb, S 2018, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry: A European Journal . https://doi.org/10.1002/chem.201705299, Adam, C, Peters, A D, Lizio, M G, Whitehead, G F S, Diemer, V, Cooper, J A, Cockroft, S L, Clayden, J & Webb, S J 2018, ' The Role of Terminal Functionality in the Membrane and Antibacterial Activity of Peptaibol-Mimetic Aib Foldamers ', Chemistry-A European Journal, pp. 2249-2256 . https://doi.org/10.1002/chem.201705299
- Accession number :
- edsair.doi.dedup.....bddc97c369faee644b52633bfcde09d8
- Full Text :
- https://doi.org/10.1002/chem.201705299