Solid-phase fluorescent BODIPY-peptide synthesis: Via in situ dipyrrin construction

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Abstract

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 in situ 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 BODIPY1-Pep4 demonstrates intact selectivity in vitro, 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. This journal is

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Wu, Y., Tam, W. S., Chau, H. F., Kaur, S., Thor, W., Aik, W. S., … Wong, K. L. (2020). Solid-phase fluorescent BODIPY-peptide synthesis: Via in situ dipyrrin construction. Chemical Science, 11(41), 11266–11273. https://doi.org/10.1039/d0sc04849f

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