Initial Bubble Collapse Plays a Key Role in the Transition to Elongation in T7 RNA Polymerase
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference44 articles.
1. Promoter melting by T7 ribonucleic acid polymerase as detected by single-stranded endonuclease digestion
2. T7 RNA polymerase interacts with its promoter from one side of the DNA helix
3. Thermodynamic and Kinetic Measurements of Promoter Binding by T7 RNA Polymerase
4. Structural basis for initiation of transcription from an RNA polymerase–promoter complex
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1. High-salt transcription from enzymatically gapped promoters nets higher yields and purity of transcribed RNAs;Nucleic Acids Research;2023-01-31
2. High-salt transcription of DNA cotethered with T7 RNA polymerase to beads generates increased yields of highly pure RNA;Journal of Biological Chemistry;2021-09
3. Maximizing transcription of nucleic acids with efficient T7 promoters;Communications Biology;2020-08-14
4. Promoter Length Affects the Initiation of T7 RNA Polymerase In Vitro: New Insights into Promoter/Polymerase Co-evolution;Journal of Molecular Evolution;2019-12-21
5. Efficient inhibition of RNA self-primed extension by addition of competing 3′-capture DNA-improved RNA synthesis by T7 RNA polymerase;Nucleic Acids Research;2019-08-08
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