@article{af6c54e797d6467faaac1a8856104bc8,
title = "A Gold-PROTAC Degrades the Oncogenic Tyrosine Kinase MERTK: Insights into the Degradome from a Steady-State System",
abstract = "Proteolysis targeting chimeras (PROTACs) are bifunctional molecules designed to induce the degradation of specific proteins within a cell. While most PROTACs are noncovalent interactors, covalent PROTACs may benefit from improved selectivity and pharmacodynamics, yet remain largely understudied. Here, a covalent gold-based PROTAC (AuPROTAC) was synthesized, featuring a Au(III)-warhead, known to induce cysteine-arylation in a gold-templated two-step mechanism, linked to a cereblon binding moiety. The degradome of the AuPROTAC was characterized by establishing a cycloheximide chase assay in a nonproliferative steady-state HL-60 cell culture, enabling the identification of PROTAC degradation targets uncoupled from confounding effects originating from cell-cycle-dependent translational patterns. The method was verified using the known SMARCA2 and PBRM1-degrader ACBI2. AuPROTAC could degrade the oncogenic tyrosine kinase MERTK and the thioredoxin-like 1 protein TXNL1. Their degradation was successfully rescued by proteasome inhibition. Proteome-wide degradation selectivity was further characterized by ranking the degraded targets according to the reduction extent of their protein half-lives. Interestingly, the AuPROTAC degraded a relatively limited number of proteins (95) when compared to ACBI2 (221).",
keywords = "Humans, Proteolysis/drug effects, Gold/chemistry, c-Mer Tyrosine Kinase/metabolism, HL-60 Cells, Thioredoxins/metabolism",
author = "Thomas, \{Sophie R\} and Thomas Iellici and Mihyun Park and Elisabeth Klaus and Andrea Bileck and Christopher Gerner and Meier-Menches, \{Samuel M\} and Angela Casini",
note = "Accession Number WOS:001654497700001 PubMed ID 41486557",
year = "2026",
month = jan,
day = "16",
doi = "10.1021/acschembio.5c00860",
language = "English",
volume = "21",
pages = "170--186",
journal = "ACS Chemical Biology",
issn = "1554-8929",
publisher = "American Chemical Society",
number = "1",
}