Zhang X, Gharibi H, Sokolova B, Meng Z, Lyu H, Saei AA, Gaetani M, Zubarev RA
Anal. Chem. 98 (32) 23939-23948 [2026-08-18; online 2026-08-18]
Understanding how cellular proteins interact with their environment, including endogenous and exogenous molecules, is critical for elucidating mechanisms of cellular regulation and drug action. Partial proteolysis-based techniques offer peptide-level resolution of ligand-induced conformational changes but are limited by modest proteome coverage and depth, as well as sensitivity to the experimental conditions. To overcome these limitations, we developed high-ratio partial proteolysis with carrier proteome (HOLSER), an efficient workflow that features an extended digestion time for reduced peptide yield variability as well as tandem mass tag multiplexing that includes full digests for enhanced proteome depth and sequence coverage, as well as higher precision of peptide abundance measurements. We demonstrate HOLSER capabilities of probing structural changes on the scale of specific binding sites for kinase target mapping, individual protein domains for structural mapping of the FKBP-mTOR complex in response to rapamycin, as well as global proteome structure profiling.
Chemical Proteomics [Technology development]
PubMed 42610894
DOI 10.1021/acs.analchem.6c04688
Crossref 10.1021/acs.analchem.6c04688
pmc: PMC13492042
pii: 5238560