Late-stage Minimal Labeling of Peptides and Proteins for Real-time Imaging of Cellular Trafficking

27 September 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

The cellular uptake routes of peptides and proteins are complex and diverse, often handicapping therapeutic success. Understanding their mechanisms of internalization requires chemical derivatization with approaches that are compatible with wash-free and real-time imaging. In this work, we developed a new late-stage labeling strategy for unprotected peptides and proteins, which retains their biological activity while enabling live-cell imaging of uptake and intracellular trafficking. S-bridged nitrobenzodiazoles were selectively incorporated into Cys residues of both linear and cyclic peptides via Pd-mediated arylation with good yields and high purities. The resulting labeled peptides are chemically stable under physiological conditions and display strong fluorogenic character for wash-free imaging studies. We utilized this approach to prepare native-like analogues of cell-penetrating peptides and performed time-course analysis of their internalization routes in live cells by fluorescence lifetime imaging. Furthermore, we applied our strategy to label the chemokine protein mCCL2 and monitor its internalization via receptor-mediated endocytosis in live macrophages. This study provides a straightforward strategy for late-stage fluorogenic labeling of intact peptides and small proteins and direct visualization of dynamic intracellular events.

Supplementary materials

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Table of Contents 1. Experimental Details 2. Chemical Synthesis 3. Supplementary Figures 4. Movie Legends 5. NMR Spectra 6. Crystal Data and Structure Refinement 7. Supplementary References
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