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Journal of Molecular Biology|November 25, 2005
Archaeal RNA polymerase is sensitive to intrinsic termination directed by transcribed and remote sequencesThomas J Santangelo, John N Reeve
Methods in Molecular Biology (Clifton, N.J.)|February 11, 2015
Manipulating archaeal systems to permit analyses of transcription elongation-termination decisions in vitroAlexandra M Gehring, Thomas J Santangelo
Transcription|October 28, 2020
Archaeal transcriptionBreanna R Wenck, Thomas J Santangelo
Biomolecules|October 29, 2020
Archaeal DNA Repair MechanismsCraig J Marshall, Thomas J Santangelo
Methods (San Diego, Calif.)|June 2, 2015
Analyses of in vivo interactions between transcription factors and the archaeal RNA polymeraseJulie E Walker, Thomas J Santangelo
The Journal of Biological Chemistry|June 1, 2010
Deletion of switch 3 results in an archaeal RNA polymerase that is defective in transcript elongationThomas J Santangelo, John N Reeve
Frontiers in Microbiology|June 16, 2012
Genetics Techniques for Thermococcus kodakarensisTravis H Hileman, Thomas J Santangelo
Journal of Bacteriology|May 20, 2004
DNA binding regions of Q proteins of phages lambda and phi80Jingshu Guo, Jeffrey W Roberts
Journal of Molecular Biology|November 11, 2003
Role of the non-template strand of the elongation bubble in intrinsic transcription terminationAndrew M Ryder, Jeffrey W Roberts
Proceedings of the National Academy of Sciences of the United States of America|July 29, 2015
Two transcription pause elements underlie a σ70-dependent pause cycleEric J Strobel, Jeffrey W Roberts
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