| Literature DB >> 32341466 |
Yu-Zhe Wang1,2, Xiao Liu3, George Way4, Vipul Madarha4, Qing-Tong Zhou5, De-Hua Yang6, Jia-Yu Liao7, Ming-Wei Wang8,9,10.
Abstract
SUMOylation is one of the posttranslational modifications that mediate cellular activities such as transcription, DNA repair, and signal transduction and is involved in the cell cycle. However, only a limited number of small molecule inhibitors have been identified to study its role in cellular processes. Here, we report a Förster resonance energy transfer (FRET) high-throughput screening assay based on the interaction between E2 Ubc9 and E3 PIAS1. Of the 3200 compounds screened, 34 (1.1%) showed higher than 50% inhibition and 4 displayed dose-response inhibitory effects. By combining this method with a label-free surface plasmon resonance (SPR) assay, false positives were excluded leading to discovering WNN0605-F008 and WNN1062-D002 that bound to Ubc9 with KD values of 1.93 ± 0.62 and 5.24 ± 3.73 μM, respectively. We examined the effect of the two compounds on SUMO2-mediated SUMOylation of RanGAP1, only WNN0605-F008 significantly inhibited RanGAP1 SUMOylation, whereas WNN1062-D002 did not show any inhibition. These compounds, with novel chemical scaffolds, may serve as the initial material for developing new SUMOylation inhibitors.Entities:
Keywords: Förster resonance energy transfer; PIAS1; SUMOylation inhibitor; Ubc9; WNN0605-F008; high-throughput screening; surface plasmon resonance
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Year: 2020 PMID: 32341466 PMCID: PMC7656853 DOI: 10.1038/s41401-020-0405-7
Source DB: PubMed Journal: Acta Pharmacol Sin ISSN: 1671-4083 Impact factor: 7.169