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通过X射线晶体学揭示的一种环化双环和线性抗菌肽中的混合手性α-螺旋。

A mixed chirality α-helix in a stapled bicyclic and a linear antimicrobial peptide revealed by X-ray crystallography.

作者信息

Baeriswyl Stéphane, Personne Hippolyte, Di Bonaventura Ivan, Köhler Thilo, van Delden Christian, Stocker Achim, Javor Sacha, Reymond Jean-Louis

机构信息

Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern Freiestrasse 3 3012 Bern Switzerland

Department of Microbiology and Molecular Medicine, University of Geneva, Service of Infectious Diseases, University Hospital of Geneva Geneva Switzerland.

出版信息

RSC Chem Biol. 2021 Aug 20;2(6):1608-1617. doi: 10.1039/d1cb00124h. eCollection 2021 Dec 2.

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.

摘要

当肽α-螺旋包含具有l-手性的氨基酸时为右手螺旋,而包含d-手性氨基酸时为左手螺旋,然而混合手性的肽通常不会形成α-螺旋,除非使用诸如非天然残基氨基异丁酸这样的螺旋诱导剂。在此我们报告了仅由天然残基组成的短肽中混合手性α-螺旋的首个X射线晶体结构,该短肽为例证性的一种钉状双环和一种线性膜破坏两亲性抗菌肽(AMP),含有七个l-残基和四个d-残基,作为岩藻糖基化类似物与细菌凝集素LecB的复合物。混合手性α-螺旋可与同手性α-螺旋叠加,并且在类似条件下形成,如圆二色光谱和分子动力学模拟所示,但不具有溶血活性且抗蛋白水解。在LecB的蛋白质环境中观察到仅由天然残基组成的混合手性α-螺旋,这表明α-螺旋混合手性序列存在广阔的未探索领域,以及它们在优化生物活性α-螺旋肽方面的可能用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65e6/8637766/c7c1ecc2fd50/d1cb00124h-f1.jpg

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