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Gene Regulation
2 Results
- Accelerated CommunicationsOpen Access
Cockayne syndrome B protein regulates recruitment of the Elongin A ubiquitin ligase to sites of DNA damage
Journal of Biological ChemistryVol. 292Issue 16p6431–6437Published online: March 14, 2017- Juston C. Weems
- Brian D. Slaughter
- Jay R. Unruh
- Stefan Boeing
- Shawn M. Hall
- Merry B. McLaird
- and others
Cited in Scopus: 14Elongin A performs dual functions as the transcriptionally active subunit of RNA polymerase II (Pol II) elongation factor Elongin and as the substrate recognition subunit of a Cullin-RING E3 ubiquitin ligase that ubiquitylates Pol II in response to DNA damage. Assembly of the Elongin A ubiquitin ligase and its recruitment to sites of DNA damage is a tightly regulated process induced by DNA-damaging agents and α-amanitin, a drug that induces Pol II stalling. In this study, we demonstrate (i) that Elongin A and the ubiquitin ligase subunit CUL5 associate in cells with the Cockayne syndrome B (CSB) protein and (ii) that this interaction is also induced by DNA-damaging agents and α-amanitin. - Gene RegulationOpen Access
Assembly of the Elongin A Ubiquitin Ligase Is Regulated by Genotoxic and Other Stresses
Journal of Biological ChemistryVol. 290Issue 24p15030–15041Published online: April 15, 2015- Juston C. Weems
- Brian D. Slaughter
- Jay R. Unruh
- Shawn M. Hall
- Merry B. McLaird
- Joshua M. Gilmore
- and others
Cited in Scopus: 16Background: Elongin is both a Pol II elongation factor and part of a ubiquitin ligase targeting stalled Pol II.Results: Elongin ubiquitin ligase assembly is driven by signals that provoke Pol II stalling and/or activate Elongin-dependent transcription.Conclusion: Elongin ligase assembly is a regulated process.Significance: This study provides insight into Elongin ubiquitin ligase functions and general mechanisms of ubiquitin ligase activation.