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A Mixed Chirality α-helix in a Stapled Bicyclic and a Linear Antimicrobial Peptide Revealed by X-ray Crystallography

Overview
Journal RSC Chem Biol
Specialty Biology
Date 2022 Jan 3
PMID 34977576
Citations 7
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Abstract

The peptide α-helix is right-handed when containing amino acids with l-chirality, and left-handed with d-chirality, however mixed chirality peptides generally do not form α-helices unless a helix inducer such as the non-natural residue amino-isobutyric acid is used. Herein we report the first X-ray crystal structures of mixed chirality α-helices in short peptides comprising only natural residues as the example of a stapled bicyclic and a linear membrane disruptive amphiphilic antimicrobial peptide (AMP) containing seven l- and four d-residues, as complexes of fucosylated analogs with the bacterial lectin LecB. The mixed chirality α-helices are superimposable onto the homochiral α-helices and form under similar conditions as shown by CD spectra and MD simulations but non-hemolytic and resistant to proteolysis. The observation of a mixed chirality α-helix with only natural residues in the protein environment of LecB suggests a vast unexplored territory of α-helical mixed chirality sequences and their possible use for optimizing bioactive α-helical peptides.

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References
1.
Oren Z, Hong J, Shai Y . A repertoire of novel antibacterial diastereomeric peptides with selective cytolytic activity. J Biol Chem. 1997; 272(23):14643-9. DOI: 10.1074/jbc.272.23.14643. View

2.
Shepherd N, Hoang H, Abbenante G, Fairlie D . Left- and right-handed alpha-helical turns in homo- and hetero-chiral helical scaffolds. J Am Chem Soc. 2009; 131(43):15877-86. DOI: 10.1021/ja9065283. View

3.
Imberty A, Wimmerova M, Mitchell E, Gilboa-Garber N . Structures of the lectins from Pseudomonas aeruginosa: insight into the molecular basis for host glycan recognition. Microbes Infect. 2004; 6(2):221-8. DOI: 10.1016/j.micinf.2003.10.016. View

4.
Roethlisberger P, Istrate A, Marcaida Lopez M, Visini R, Stocker A, Reymond J . X-ray structure of a lectin-bound DNA duplex containing an unnatural phenanthrenyl pair. Chem Commun (Camb). 2016; 52(26):4749-52. DOI: 10.1039/c6cc00374e. View

5.
Papo N, Oren Z, Pag U, Sahl H, Shai Y . The consequence of sequence alteration of an amphipathic alpha-helical antimicrobial peptide and its diastereomers. J Biol Chem. 2002; 277(37):33913-21. DOI: 10.1074/jbc.M204928200. View