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Abstract
Controlling protein localization through chemical biology tools is essential for mechanistic interrogations, functional perturbations, and therapeutic development. While existing tools cover a wide range of applications, no single approach simultaneously enables inducible trapping, controlled release, and visualization of a protein of interest (POI). To address this gap, we developed Biotin-Operated Ligand Trapping (BOLT), which combines a HaloTag-fused POI with a streptavidin trap. Desthiobiotin-conjugated Janelia Fluor HaloTag ligands enable POI visualization, trapping, and biotin-operated release. We demonstrate BOLT’s capacity in synchronized secretory cargo release, microtubule-directed organelle movement and hitchhiking, and ectopically localizing nuclear transcription factor. Importantly, pulse-chase BOLT further reveals bidirectional endoplasmic reticulum-Golgi trafficking of an endogenous Golgi enzyme and distinguishes recycled from newly synthesized enzyme populations using distinct HTLs. Altogether, BOLT provides an all-in-one platform to interrogate how subcellular localization regulates protein function across HaloTag-compatible systems.


