Wu Yue, Tam Wing-Sze, Chau Ho-Fai, Kaur Simranjeet, Thor Waygen, Aik Wei Shen, Chan Wai-Lun, Zweckstetter Markus, Wong Ka-Leung
Department of Chemistry, Hong Kong Baptist University Kowloon Hong Kong SAR China
Department for NMR-based Structural Biology, Max Planck Institute for Biophysical Chemistry Am Fassberg 11 37077 Göttingen Germany
Chem Sci. 2020 Sep 24;11(41):11266-11273. doi: 10.1039/d0sc04849f.
Traditional fluorescent peptide chemical syntheses hinge on the use of limited fluorescent/dye-taggable unnatural amino acids and entail multiple costly purifications. Here we describe a facile and efficient protocol for construction of dipyrrins on the N-terminus with 20 natural and five unnatural amino acids and the lysine's side chain of selected peptides/peptide drugs through Fmoc-based solid-phase peptide synthesis. The new strategy enables the direct formation of boron-dipyrromethene (BODIPY)-peptide conjugates from simple aldehyde and pyrrole derivatives without pre-functionalization, and only requires a single-time chromatographic purification at the final stage. As a model study, synthesized EBNA1-targeting demonstrates intact selectivity , responsive fluorescence enhancement, and higher light cytotoxicity due to the photo-generation of cytotoxic singlet oxygen. This work offers a novel practical synthetic platform for fluorescent peptides for multifaceted biomedical applications.
传统的荧光肽化学合成依赖于使用有限的可荧光/可标记染料的非天然氨基酸,并且需要多次昂贵的纯化步骤。在此,我们描述了一种简便高效的方法,通过基于Fmoc的固相肽合成,在N端构建二吡咯,并在选定的肽/肽药物的赖氨酸侧链上引入20种天然氨基酸和5种非天然氨基酸。该新策略能够直接从简单的醛和吡咯衍生物形成硼二吡咯亚甲基(BODIPY)-肽共轭物,无需预先功能化,并且仅在最后阶段需要单次色谱纯化。作为一项模型研究,合成的靶向EBNA1的肽表现出完整的选择性、响应性荧光增强以及由于细胞毒性单线态氧的光生成而具有更高的光细胞毒性。这项工作为多方面生物医学应用的荧光肽提供了一个新颖实用的合成平台。