Cameron Alan J, Harris Paul W R, Brimble Margaret A
School of Chemical Sciences and School of Biological Sciences, The University of Auckland, 23 Symonds St, Auckland, 1142, New Zealand.
Maurice Wilkins Centre for Molecular Biodiscovery, The University of Auckland, Auckland, 1142, New Zealand.
Angew Chem Int Ed Engl. 2020 Oct 5;59(41):18054-18061. doi: 10.1002/anie.202004656. Epub 2020 Sep 3.
The ability to modify peptides and proteins chemoselectively is of continued interest in medicinal chemistry, with peptide conjugation, lipidation, stapling, and disulfide engineering at the forefront of modern peptide chemistry. Herein we report a robust method for the on-resin preparation of allenamide-modified peptides, an unexplored functionality for peptides that provides a versatile chemical tool for chemoselective inter- or intramolecular bridging reactions with thiols. The bridging reaction is biocompatible, occurring spontaneously at pH 7.4 in catalyst-free aqueous media. By this "click" approach, a model peptide was successfully modified with a diverse range of alkyl and aryl thiols. Furthermore, this technique was demonstrated as a valuable tool to induce spontaneous intramolecular cyclisation by preparation of an oxytocin analogue, in which the native disulfide bridge was replaced with a vinyl sulfide moiety formed by thia-Michael addition of a cysteine thiol to the allenamide handle.
在药物化学领域,对肽和蛋白质进行化学选择性修饰的能力一直备受关注,其中肽偶联、脂化、环化和二硫键工程处于现代肽化学的前沿。在此,我们报道了一种在树脂上制备丙二烯酰胺修饰肽的稳健方法,这是一种尚未被探索的肽功能,它为与硫醇进行化学选择性分子间或分子内桥连反应提供了一种通用的化学工具。这种桥连反应具有生物相容性,在无催化剂的水性介质中,于pH 7.4时自发发生。通过这种“点击”方法,一个模型肽成功地用多种烷基和芳基硫醇进行了修饰。此外,通过制备一种催产素类似物,该技术被证明是诱导自发分子内环化的有价值工具,其中天然二硫键被由半胱氨酸硫醇与丙二烯酰胺基团进行硫杂迈克尔加成形成的乙烯基硫醚部分所取代。