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Twin disulfides for orthogonal disulfide pairing and the directed folding of multicyclic peptides

机译:双二硫键用于正交二硫键配对和多环肽的定向折叠

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Multicyclic peptides are emerging as an exciting platform for drug and targeted ligand discovery owing to their expected greater target affinity/selectivity/stability versus linear or monocyclic peptides. However, although the precise pairing of cysteine residues in proteins is routinely achieved in nature, the rational pairing of cysteine residues within polypeptides is a long-standing challenge for the preparation of multicyclic species containing several disulfide bridges. Here, we present an efficient and straightforward approach for directing the intermolecular and intramolecular pairing of cysteine residues within peptides using a minimal CXC motif. Orthogonal disulfide pairing can be exploited in complex redox media to rationally produce dimeric peptides and bi/tricyclic peptides from fully reduced peptides containing 1-6 cysteine residues. This strategy, which does not rely on extensive manipulation of the primary sequence, post-translational modification or protecting groups, should greatly benefit the development of multicyclic peptide therapeutics and targeting ligands.
机译:多环肽由于与线性或单环肽相比预期具有更高的靶亲和力/选择性/稳定性,因此正在成为药物和靶向配体发现的令人兴奋的平台。然而,尽管蛋白质中半胱氨酸残基的精确配对是自然界中常规实现的,但是多肽内半胱氨酸残基的合理配对对于制备含有数个二硫键的多环物种是一个长期的挑战。在这里,我们提出了一种有效而直接的方法,用于使用最小的CXC图案引导肽内半胱氨酸残基的分子间和分子内配对。可以在复杂的氧化还原介质中利用正交二硫键配对,从含有1-6个半胱氨酸残基的完全还原的肽中合理产生二聚体肽和双/三环肽。该策略不依赖于对初级序列,翻译后修饰或保护基团的广泛操纵,应大大有利于多环肽治疗剂和靶向配体的开发。

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