Functional interaction of Rpb1 and Spt5 C-terminal domains in co-transcriptional histone modification
Author:
Publisher
Oxford University Press (OUP)
Subject
Genetics
Link
http://academic.oup.com/nar/article-pdf/43/20/9766/16660543/gkv837.pdf
Reference65 articles.
1. The Spt4–Spt5 complex: A multi-faceted regulator of transcription elongation
2. The RNA polymerase II CTD coordinates transcription and RNA processing
3. Structural basis for Spt5-mediated recruitment of the Paf1 complex to chromatin
4. P-TEFb-Mediated Phosphorylation of hSpt5 C-Terminal Repeats Is Critical for Processive Transcription Elongation
5. Separable Functions of the Fission Yeast Spt5 Carboxyl-Terminal Domain (CTD) in Capping Enzyme Binding and Transcription Elongation Overlap with Those of the RNA Polymerase II CTD
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1. The CDK9-SPT5 Axis in Control of Transcription Elongation by RNAPII;Journal of Molecular Biology;2024-08
2. Repression of pervasive antisense transcription is the primary role of fission yeast RNA polymerase II CTD serine 2 phosphorylation;Nucleic Acids Research;2024-05-27
3. The Rtf1/Prf1-dependent histone modification axis counteracts multi-drug resistance in fission yeast;Life Science Alliance;2024-03-21
4. The Rtf1/Prf1-dependent histone modification axis and Rpb1 C-terminal domain phosphorylation counteract multi-drug resistance in fission yeast;2023-11-24
5. New connections between ubiquitylation and methylation in the co-transcriptional histone modification network;Current Genetics;2021-06-05
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