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Immobilizing the Endogenous 5-Hydroxytryptamine Transporter by Ligand-Directed and Proximity-Catalyzed Acyl Imidazole
Xinxin Zheng1, Sidi Cun1, Jiatai Yin1
1College of Life Sciences, Northwest University, Xi'an 710069, China.
Abstract:
The sensitivity, selectivity, and accuracy of immobilized protein-based methods are critically dependent on the strategies employed for protein immobilization. Compared with random immobilization approaches, site-specific covalent methods have emerged as promising alternatives, offering enhanced analytical performance. However, these methods typically require genetic modification of the target protein to incorporate a specific tag or prior purification of the protein, posing significant challenges for immobilizing endogenous proteins. Herein, we address these limitations by using the 5-hydroxytryptamine transporter (5-HTT) as a model system. We designed a probe by conjugating fluvoxamine─a specific ligand of 5-HTT─with either a fluorescent reporter or aminopropyl-modified silica gel through an alkyl linker containing an acyl imidazole moiety as the reactive group. By introducing ligand-directed acyl imidazole (LDAI) chemistry, we achieved selective labeling of 5-HTT in live cells and endogenous 5-HTT immobilization without purification in advance. Labeling experiments confirmed the high specificity and favorable kinetics of the LDAI ligands toward 5-HTT. Chromatographic analysis revealed significant improvements in selectivity (5.7-50.9-fold), resolution (1.2-3.0-fold), and sensitivity (1.0-12.0-fold) for analyzing canonical ligands when using immobilized endogenous 5-HTT, compared to His-tagged and Halo-tagged recombinant proteins. This approach, by substituting fluvoxamine with other ligands in the probe, can be generalized for the labeling and immobilization of a wide range of endogenous proteins, offering a versatile platform for advanced protein-based analytical techniques.
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