Targeting Spt5-Pol II by Small-Molecule Inhibitors Uncouples Distinct Activities and Reveals Additional Regulatory Roles
Overview
Affiliations
Spt5 is a conserved and essential transcription elongation factor that promotes promoter-proximal pausing, promoter escape, elongation, and mRNA processing. Spt5 plays specific roles in the transcription of inflammation and stress-induced genes and tri-nucleotide expanded-repeat genes involved in inherited neurological pathologies. Here, we report the identification of Spt5-Pol II small-molecule inhibitors (SPIs). SPIs faithfully reproduced Spt5 knockdown effects on promoter-proximal pausing, NF-κB activation, and expanded-repeat huntingtin gene transcription. Using SPIs, we identified Spt5 target genes that responded with profoundly diverse kinetics. SPIs uncovered the regulatory role of Spt5 in metabolism via GDF15, a food intake- and body weight-inhibitory hormone. SPIs further unveiled a role for Spt5 in promoting the 3' end processing of histone genes. While several SPIs affect all Spt5 functions, a few inhibit a single one, implying uncoupling and selective targeting of Spt5 activities. SPIs expand the understanding of Spt5-Pol II functions and are potential drugs against metabolic and neurodegenerative diseases.
Kus K, Carrique L, Kecman T, Fournier M, Hassanein S, Aydin E Nat Commun. 2025; 16(1):10.
PMID: 39746995 PMC: 11695829. DOI: 10.1038/s41467-024-55063-7.
Barthel L, Pettemeridi S, Nebras A, Schnaidt H, Fahland K, Vormwald L Front Cell Dev Biol. 2024; 12:1434168.
PMID: 39445331 PMC: 11496258. DOI: 10.3389/fcell.2024.1434168.
Kinetic pathway of HIV-1 TAR cotranscriptional folding.
Jin L, Zhang S, Song Z, Heng X, Chen S Nucleic Acids Res. 2024; 52(10):6066-6078.
PMID: 38738640 PMC: 11162800. DOI: 10.1093/nar/gkae362.
Bahat A, Itzhaki E, Weiss B, Tolmasov M, Tsoory M, Kuperman Y EMBO Mol Med. 2024; 16(3):523-546.
PMID: 38374466 PMC: 10940305. DOI: 10.1038/s44321-023-00020-y.
Binding of small molecule inhibitors to RNA polymerase-Spt5 complex impacts RNA and DNA stability.
Gallardo A, Dutagaci B J Comput Aided Mol Des. 2023; 38(1):1.
PMID: 37987925 PMC: 10663202. DOI: 10.1007/s10822-023-00543-z.