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Nucleic Acids Research|October 17, 2017
Insights into RNA polymerase catalysis and adaptive evolution gained from mutational analysis of a locus conferring rifampicin resistanceOlga Yurieva, Vadim Nikiforov, Vadim Nikiforov, et al.
Bioconjugate Chemistry|February 22, 2013
Reactive rifampicin derivative able to damage transcription complexMaxim Kozlov, Eugeny Nudler, Vadim Nikiforov, et al.
FEMS Microbiology Letters|June 8, 2002
A broad host range plasmid vector that does not encode replication proteinsEza Kalyaeva, Irina Bass, Gennady Kholodii, et al.
Biochemical and Biophysical Research Communications|November 4, 2017
Site-specific aptamer inhibitors of Thermus RNA polymeraseNataliya Miropolskaya, Andrey Feklistov, Vadim Nikiforov, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 27, 2009
Allosteric control of catalysis by the F loop of RNA polymeraseNataliya Miropolskaya, Irina Artsimovitch, Saulius Klimasauskas, et al.
Transcription|February 18, 2011
Modulation of RNA polymerase activity through the trigger loop foldingNataliya Miropolskaya, Vadim Nikiforov, Saulius Klimasauskas, et al.
European Journal of Biochemistry|December 21, 2004
Aptamers to Escherichia coli core RNA polymerase that sense its interaction with rifampicin, sigma-subunit and GreBAndrey Kulbachinskiy, Andrey Feklistov, Igor Krasheninnikov, et al.
The Journal of Biological Chemistry|January 4, 2013
Control of transcriptional fidelity by active center tuning as derived from RNA polymerase endonuclease reactionEkaterina Sosunova, Vasily Sosunov, Vitaly Epshtein, et al.
Antimicrobial Agents and Chemotherapy|December 18, 2013
Antibiotic streptolydigin requires noncatalytic Mg2+ for binding to RNA polymeraseSavva Zorov, Yulia Yuzenkova, Vadim Nikiforov, et al.
Nucleic Acids Research|May 31, 2022
Mutations compensating for the fitness cost of rifampicin resistance in Escherichia coli exert pleiotropic effect on RNA polymerase catalysisNatalia Kurepina, Maxim Chudaev, Barry N Kreiswirth, et al.
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