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Updated: Sep 1, 2026

Chemoselective Modification of Viral Surfaces via Bioorthogonal Click Chemistry
Published on: August 19, 2012
Democratizing LYTACs-A Modular Click Chemistry Platform for the Rapid Assembly of Lysosome-Targeting Chimeras
Peter A Szijj1, Sherry Li1, Madeline K Gilbert2
1Department of Chemistry and Sarafan Chem-H, Stanford University, Stanford, California94305, United States of America.
Abstract:
Lysosome-targeting chimeras (LYTACs) are emerging therapeutics that mediate extracellular targeted protein degradation. Through simultaneous engagement of a target protein of interest and a lysosomal trafficking receptor, these bifunctional molecules can facilitate the degradation of both secreted and cell-surface proteins. The original LYTACs were designed to engage the cation-independent mannose-6-phosphate receptor (CI-M6PR) via complex glycopolymer or glycopolypeptide ligands conjugated to target-specific antibodies. However, the complexity of these ligands has limited the broader adoption of LYTACs as research tools. Here, we describe a simple, rapid, and modular click chemistry platform for the generation of CI-M6PR-binding LYTACs. The approach utilizes only commercially available reagents and standard laboratory equipment and allows for the conversion of virtually any antibody into a LYTAC. This method for "democratizing" LYTAC generation should facilitate the widespread adoption of these tools for biological discovery.

