Proteomics

Dataset Information

Proteome-Wide Target Identification Using Reactive Metallo-Scaffolds: A Platform for Metallodrug Discovery


ABSTRACT: Metal complexes offer unique opportunities as scaffolds in chemical biology and drug discovery, with tuneable geometry, modular coordination environments, and structural features not readily accessible with organic molecules. Here, we introduce reactive metallo-scaffolds (r-mS) - a new class of covalent metal-containing compounds - designed to map ligandable cysteines across the mammalian proteome. Using chemoproteomics, we profiled a focused r-mS library in HEK293T lysate, identifying novel cysteine ligandability and demonstrating how metal identity, arene substituents and overall molecular topography govern cysteine reactivity and proteome-wide targeting. Among the series screened, r-mS-2 emerged as a productive scaffold, which engaged cysteine 119 within the functionally relevant SAM binding domain of PRMT1. This interaction was validated via intact protein LC-MS and was determined to functionally inhibit the activity of PRMT1. Structural modelling and docking provided insights into the molecular basis of binding, which implied π–stacking and electrostatic complementarity in driving covalent engagement. Overall, we establish for the first time reactive metallo-scaffolds as versatile tools for proteome-wide covalent ligand discovery and support the development of selective, metal-based chemical probes and inhibitors.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Early Embryonic Cell

DISEASE(S): Disease Free

SUBMITTER: Harry Wilders  

LAB HEAD: Jeannine Hess

PROVIDER: PXD068320 | Pride | 2026-09-21

REPOSITORIES: Pride

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