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在未保护的肽上直接进行化学选择性肽环化和双环化。

Chemoselective Peptide Cyclization and Bicyclization Directly on Unprotected Peptides.

作者信息

Zhang Yue, Zhang Qing, Wong Clarence T T, Li Xuechen

机构信息

Department of Chemistry, State Key Laboratory of Synthetic Chemistry , The University of Hong Kong , Hong Kong , P. R. China , SAR.

Department of Chemistry , The Chinese University of Hong Kong , Hong Kong , P. R. China , SAR.

出版信息

J Am Chem Soc. 2019 Aug 7;141(31):12274-12279. doi: 10.1021/jacs.9b03623. Epub 2019 Jul 29.

Abstract

Cyclic peptides are drawing wide attention as potential medium-sized modulators of biomolecular interactions with large binding surfaces. Simple but effective peptide cyclization methods are needed to construct cyclic peptide libraries by both peptide and nonpeptide chemists. Herein, we report a highly chemoselective and operation-simple method directly cyclizing unprotected peptides, in which -phthalaldehyde (OPA) is found to react with the lysine/N-terminus and cysteine within one unprotected peptide sequence effectively to form the isoindole-bridged cyclic peptides. This reaction is carried out in the aqueous buffer and features tolerance of diverse functionalities, rapid and clean transformation, and operational simplicity. In addition, OPA peptide cyclization can also be combined with native chemical ligation-mediated cyclization to generate bicyclic peptides. Furthermore, the OPA peptide cyclization product can further react with the -maleimide moiety in a one-pot manner to introduce additional functional motifs, like a fluorophore probe, biomolecules (e.g., glycan, peptide, or DNA). This OPA-cyclization method extends the toolbox for integrating postcyclization modification and bioconjugation into peptide cyclization with an all-in-one manner strategy.

摘要

环肽作为具有大结合表面的生物分子相互作用的潜在中型调节剂正受到广泛关注。肽化学家和非肽化学家都需要简单而有效的肽环化方法来构建环肽文库。在此,我们报道了一种高度化学选择性且操作简单的直接环化未保护肽的方法,其中发现邻苯二甲醛(OPA)能与一个未保护肽序列中的赖氨酸/N端和半胱氨酸有效反应,形成异吲哚桥连的环肽。该反应在水性缓冲液中进行,具有对多种官能团的耐受性、快速且干净的转化以及操作简便的特点。此外,OPA肽环化还可与天然化学连接介导的环化相结合以生成双环肽。再者,OPA肽环化产物能以一锅法进一步与马来酰亚胺部分反应,引入额外的功能基序,如荧光团探针、生物分子(如聚糖、肽或DNA)。这种OPA环化方法以一体化策略扩展了用于将环化后修饰和生物共轭整合到肽环化中的工具箱。

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