UBA5 is the E1 enzyme that initiates UFMylation, a ubiquitin-like modification implicated in proteostasis, neurodegeneration, and cancer. Here, we report a chemical biology approach to interrogate UBA5 function through small-molecule inhibition. We developed a robust high-throughput screening assay based on AMP-GloTM and screened a library of blood-brain barrier-permeable compounds, identifying five inhibitors spanning three distinct scaffolds with low-micromolar potency. Orthogonal biochemical and gel-based assays confirmed that these compounds directly inhibit UBA5-mediated UFM1 activation and conjugation, with selectivity over other E1 enzymes, including UBA1. In cells, these compounds suppressed endogenous UFMylation without significantly affecting global polyubiquitination, supporting pathway and target engagement. Together, these studies establish UBA5 as a tractable enzymatic target and provide first-in-class chemical tools to probe UFMylation. Given the emerging role of UFMylation in disease, these inhibitors offer a foundation for developing therapeutics targeting proteostasis pathways.
Vigyasa Singh, Yuansong Wan, Zhisong Gao et al.· ACS Chemical Biology· 0 citations
The expression, purification, and enzymatic characterization of recombinant Mtb ADSS are reported, providing the first comprehensive biochemical framework for studying Mtb ADSS and establishing a foundation for structure-guided inhibitor discovery targeting purine biosynthesis as a novel antitubercular strategy.
Vigyasa Singh, Ran Zhang, Ke Chen et al.· Biochimica et Biophysica Act...· 0 citations
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