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1.
J Med Chem ; 63(17): 9168-9180, 2020 09 10.
Article in English | MEDLINE | ID: mdl-32790310

ABSTRACT

Antimicrobial peptides (AMPs) are amphipathic molecules displaying broad-spectrum bactericidal activity, providing opportunities to develop a new generation of antibiotics. However, their use is limited either by poor metabolic stability or by high hemolytic activity. We herein addressed the potential of thiazole-based γ-peptide oligomers named ATCs as tunable scaffolds to design polycationic AMP mimetics. Knowing the side chain distribution along the backbone, we rationally designed facially amphiphilic sequences with bactericidal effect in the micromolar range. Since no hemolytic activity was detected up to 100 µM, this class of compounds has shown the potential for therapeutic development.


Subject(s)
Anti-Bacterial Agents/chemistry , Antimicrobial Cationic Peptides/chemistry , Thiazoles/chemistry , Anti-Bacterial Agents/pharmacology , Antimicrobial Cationic Peptides/pharmacology , Drug Design , Erythrocytes/cytology , Erythrocytes/drug effects , Erythrocytes/metabolism , Fungi/drug effects , Gram-Negative Bacteria/drug effects , Gram-Positive Bacteria/drug effects , Hemolysis/drug effects , Humans , Microbial Sensitivity Tests
2.
Chemistry ; 23(69): 17584-17591, 2017 Dec 11.
Article in English | MEDLINE | ID: mdl-28990697

ABSTRACT

According to their restricted conformational freedom, heterocyclic γ-amino acids are usually considered to be related to Z-vinylogous γ-amino acids. In this context, oligomers alternating α-amino acids and thiazole-based γ-amino acids (ATCs) were expected to fold into a canonical 12-helical shape as described for α/γ-hybrid peptides composed of cis-α/ß-unsaturated γ-amino acids. However, through a combination of X-ray crystallography, NMR spectroscopy, FTIR experiments, and DFT calculations, it was determined that the folding behavior of ATC-containing hybrid peptides is much more complex. The homochiral α/(S)-ATC sequences were unable to adopt a stable conformation, whereas the heterochiral α/(R)-ATC peptides displayed novel ribbon structures stabilized by unusual C9/12 -bifurcated hydrogen bonds. These ribbon structures could be considered as a succession of pre-organized γ/α dipeptides and may provide the basis for designing original α-helix mimics.


Subject(s)
Amino Acids/chemistry , Peptides/chemistry , Thiazoles/chemistry , Circular Dichroism , Crystallography, X-Ray , Hydrogen Bonding , Magnetic Resonance Spectroscopy , Peptides/chemical synthesis , Protein Structure, Secondary , Spectroscopy, Fourier Transform Infrared , Stereoisomerism
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