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Nucleic Acids Research|July 16, 2024
A new approach to RNA synthesis: immobilization of stably and functionally co-tethered promoter DNA and T7 RNA polymeraseKithmie MalagodaPathiranage, Ruptanu Banerjee, Craig T Martin
Nucleic Acids Research|August 9, 2019
Efficient inhibition of RNA self-primed extension by addition of competing 3'-capture DNA-improved RNA synthesis by T7 RNA polymeraseYasaman Gholamalipour, William C Johnson, Craig T Martin
Chemical Biology & Drug Design|February 24, 2006
Stability of gold nanoparticle-bound DNA toward biological, physical, and chemical agentsGang Han, Craig T Martin, Vincent M Rotello
The Journal of Biological Chemistry|September 1, 2004
Initial bubble collapse plays a key role in the transition to elongation in T7 RNA polymerasePeng Gong, Edward A Esposito, Craig T Martin
The Journal of Biological Chemistry|November 13, 2002
Binding of the priming nucleotide in the initiation of transcription by T7 RNA polymeraseIaroslav Kuzmine, Philip A Gottlieb, Craig T Martin
Nucleic Acids Research|September 17, 2018
3' end additions by T7 RNA polymerase are RNA self-templated, distributive and diverse in character-RNA-Seq analysesYasaman Gholamalipour, Aruni Karunanayake Mudiyanselage, Craig T Martin
The Journal of Biological Chemistry|July 25, 2021
High-salt transcription of DNA cotethered with T7 RNA polymerase to beads generates increased yields of highly pure RNAElvan Cavac, Luis E Ramírez-Tapia, Craig T Martin
Biochemistry|January 27, 2007
Structural confirmation of a bent and open model for the initiation complex of T7 RNA polymeraseRosemary S Turingan, Cuihua Liu, Mary E Hawkins, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 8, 2007
Dissociation of halted T7 RNA polymerase elongation complexes proceeds via a forward-translocation mechanismYi Zhou, Deanna M Navaroli, Metewo Selase Enuameh, et al.
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