TFS and Spt4/5 accelerate transcription through archaeal histone-based chromatin
Author:
Affiliation:
1. Department of Biochemistry and Molecular Biology; Colorado State University; Fort Collins CO 80523 USA
2. Graduate Program in Cell and Molecular Biology; Colorado State University; Fort Collins CO 80523 USA
Funder
National Institutes of Health
Publisher
Wiley
Subject
Molecular Biology,Microbiology
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/mmi.14191/fullpdf
Reference97 articles.
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2. Archaeal histone selection of nucleosome positioning sequences and the procaryotic origin of histone-dependent genome evolution;Bailey;Journal of Molecular Biology,2000
3. Structure of a transcribing RNA polymerase II-DSIF complex reveals a multidentate DNA-RNA clamp;Bernecky;Nature Structural & Molecular Biology,2017
4. Archaeal DNA on the histone merry-go-round;Bhattacharyya;The FEBS Journal,2018
5. Nucleosomal elements that control the topography of the barrier to transcription;Bintu;Cell,2012
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2. Structural basis of archaeal RNA polymerase transcription elongation and Spt4/5 recruitment;Nucleic Acids Research;2024-05-06
3. Archaeal histone-based chromatin structures regulate transcription elongation rates;Communications Biology;2024-02-27
4. Structural basis of archaeal RNA polymerase transcription elongation and Spt4/5 recruitment;2024-01-05
5. Navigating the Rugged Landscape of Transcription: Nusg–Spt5 Proteins as Universal But Dissociable Stabilizers;2024
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