USR 3278 CRIOBE, PSL Research University, EPHE-UPVD-CNRS, Université de Perpignan Via Domitia, Laboratoire d'Excellence «CORAIL». Bâtiment T, 58 avenue P. Alduy, 66860 Perpignan, France.
Org Biomol Chem. 2018 May 15;16(19):3576-3583. doi: 10.1039/c8ob00686e.
1,4-Disubstituted-1,2,3-triazole (Tz) is widely used in peptides as a trans-amide bond mimic, despite having hazardous effects on the native peptide activity. The impact of amide bond substitution by Tz on peptide secondary structures is scarcely documented. We performed a Tz scan, by systematically replacing peptide bonds following the Aib residues with Tz on two model peptaibols: alamethicin F50/5 and bergofungin D, which adopt stable α- and 310 helices, respectively. We observed that the Tz insertion, whatever its position in the peptide sequences, abolished their antimicrobial activity. The structural consequences of this insertion were further investigated using CD, NMR and X-ray diffraction. Importantly, five crystal structures that were incorporated with Tz were solved, showing various degrees of alteration of the helical structures, from minor structural perturbation of the helix to partial disorder. Together, these results showed that Tz insertions impair helical secondary structures.
1,4-二取代-1,2,3-三唑(Tz)作为一种反酰胺键模拟物,在肽中被广泛应用,尽管它对天然肽活性有有害影响。Tz 取代酰胺键对肽二级结构的影响鲜有文献记载。我们通过在两种模型肽:alamethicin F50/5 和 bergofungin D 中,系统地用 Tz 取代 Aib 残基后的肽键,进行了 Tz 扫描,这两种肽分别采用稳定的α-螺旋和 310 螺旋。我们观察到,无论 Tz 在肽序列中的位置如何,其插入都会使其丧失抗菌活性。使用 CD、NMR 和 X 射线衍射进一步研究了这种插入的结构后果。重要的是,解决了五个包含 Tz 的晶体结构,显示出螺旋结构的不同程度的改变,从螺旋的微小结构扰动到部分无序。总之,这些结果表明 Tz 插入会破坏螺旋二级结构。