Institute for Molecular Bioscience, Australian Research Council Centre of Excellence for Innovations in Peptide and Protein Science, The University of Queensland, Brisbane, Qld, 4072, Australia.
ChemMedChem. 2024 Jul 15;19(14):e202400124. doi: 10.1002/cmdc.202400124. Epub 2024 May 29.
Cyclotides are cyclic peptides that are promising scaffolds for the design of drug candidates and chemical tools. However, despite there being hundreds of reported cyclotides, drug design studies have commonly focussed on a select few prototypic examples. Here, we explored whether ancestral sequence reconstruction could be used to generate new cyclotides for further optimization. We show that the reconstructed 'pseudo-ancestral' sequences, named Ancy-m (for the ancestral cyclotide of the Möbius sub-family) and Ancy-b (for the bracelet sub-family), have well-defined structures like their extant members, comprising the core structural feature of a cyclic cystine knot. This motif underpins efforts to re-engineer cyclotides for agrochemical and therapeutic applications. We further show that the reconstructed sequences are resistant to temperatures approaching boiling, bind to phosphatidyl-ethanolamine lipid bilayers at micromolar affinity, and inhibit the growth of insect cells at inhibitory concentrations in the micromolar range. Interestingly, the Ancy-b cyclotide had a higher oxidative folding yield than its comparator cyclotide cyO2, which belongs to the bracelet cyclotide subfamily known to be notoriously difficult to fold. Overall, this study provides new cyclotide sequences not yet found naturally that could be valuable starting points for the understanding of cyclotide evolution and for further optimization as drug leads.
环肽是一类具有前景的药物候选物和化学工具设计骨架的环状肽。然而,尽管已经报道了数百种环肽,但药物设计研究通常集中在少数几个典型的范例上。在这里,我们探讨了祖先序列重建是否可用于生成新的环肽以进一步优化。我们表明,重建的“伪祖先”序列,命名为 Ancy-m(用于 Möbius 亚家族的祖先环肽)和 Ancy-b(用于手链亚家族),具有与其现存成员相似的明确结构,包含环状半胱氨酸结的核心结构特征。这个基序是为农用化学品和治疗应用重新设计环肽的基础。我们进一步表明,重建的序列能够耐受接近沸点的温度,以微摩尔亲和力结合磷脂酰乙醇胺脂质双层,并以抑制浓度抑制昆虫细胞的生长,其范围在微摩尔范围内。有趣的是,Ancy-b 环肽的氧化折叠产率高于其比较物 cyO2 环肽,cyO2 属于手链环肽亚家族,已知折叠非常困难。总体而言,这项研究提供了尚未自然发现的新环肽序列,这些序列可能是理解环肽进化和进一步作为药物先导优化的有价值的起点。