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Linker-free incorporation of carbohydrates into in vitro displayed macrocyclic peptides

机译:将碳水化合物无接头地掺入体外展示的大环肽中

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摘要

We report a strategy for efficient post-translational modification of a library of ribosomally-translated peptides by activation and elimination of cysteine to dehydroalanine then conjugate addition of a range of exogenous thiols, with an emphasis on carbohydrates. These reactions are selective for cysteine, and do not interfere with amplification of the nucleic acid component of an mRNA-displayed peptide. Furthermore, these reactions are shown to be compatible with two different macrocyclisation chemistries, and when applied to a peptide containing an N-terminal cysteine give a ketone that can be functionalised in an orthogonal manner. This new strategy can overcome a limitation of ribosomal translation, providing a means to incorporate untranslatable groups such as carbohydrates in amino acid side chains, and will allow for the ribosomal generation of glycopeptides, requiring only the introduction of a free thiol in the molecule to be incorporated. In combination with in vitro selection techniques, this strategy is envisaged to allow the discovery of biologically-active glycopeptides with a near-natural, but hydrolytically stable, thioglycosidic bond.
机译:我们报告了通过激活和消除半胱氨酸到脱氢丙氨酸,然后缀合一系列外源硫醇,重点是碳水化合物,对核糖体翻译肽库进行有效的翻译后修饰的策略。这些反应对半胱氨酸是选择性的,并且不干扰mRNA展示的肽的核酸组分的扩增。此外,这些反应显示出与两种不同的大环化化学相容,并且当应用于含有N端半胱氨酸的肽时,得到的酮可以正交方式官能化。这种新策略可以克服核糖体翻译的局限性,提供一种在氨基酸侧链中掺入不可翻译基团(如碳水化合物)的方法,并允许核糖体生成糖肽,只需在分子中引入游离硫醇即可。合并。结合体外选择技术,该策略被设想为允许发现具有接近天然但水解稳定的硫糖苷键的生物活性糖肽。

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