Elongation factor ELOF1 drives transcription-coupled repair and prevents genome instability
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology
Link
http://www.nature.com/articles/s41556-021-00692-z.pdf
Reference73 articles.
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2. Gomez-Gonzalez, B. & Aguilera, A. Transcription-mediated replication hindrance: a major driver of genome instability. Genes Dev. 33, 1008–1026 (2019).
3. Gaillard, H. & Aguilera, A. Transcription as a threat to genome integrity. Annu. Rev. Biochem. 85, 291–317 (2016).
4. Laugel, V. Cockayne syndrome: the expanding clinical and mutational spectrum. Mech. Ageing Dev. 134, 161–170 (2013).
5. Xu, J. et al. Structural basis for the initiation of eukaryotic transcription-coupled DNA repair. Nature 551, 653–657 (2017).
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3. The small CRL4CSA ubiquitin ligase component DDA1 regulates transcription-coupled repair dynamics;Nature Communications;2024-07-29
4. Elf1 promotes transcription-coupled repair in yeast by using its C-terminal domain to bind TFIIH;Nature Communications;2024-07-23
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