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  1. 1.   Cross-resistance of Escherichia coli RNA polymerases conferring rifarnpin resistance to different antibiotics
  2. Xu, M.; Zhou, Y. N.; Goldstein, B. P.; Jin, D. J.
  3. Journal of Bacteriology. 2005, APR; 187(8): 2783-2792.
  1. 3.   Transcription through the nucleosome by mRNA-producing RNA polymerases
  2. Walter, W.; Kashlev, M.; Studitsky, V. M.
  3. CHROMATIN AND CHROMATIN REMODELING ENZYMES, PT C. 2004; 377 : 445-460.
  1. 4.   Chromatin remodeling by RNA polymerases
  2. Studitsky, V. M.; Walter, W.; Kireeva, M.; Kashlev, M.; Felsenfeld, G.
  3. Trends in Biochemical Sciences. 2004 29(3): 127-135.
  1. 5.   Iodine-125 radioprobing of E-coli RNA polymerase transcription elongation complexes
  2. Karamychev, V. N.; Tatusov, A.; Komissarova, N.; Kashlev, M.; Neumann, R. D.; Zhurkin, V. B.; Panyutin, I. G.
  3. RNA POLYMERASES AND ASSOCIATED FACTORS, PT D. 2003; 371 : 106-120.
  1. 6.   Assays and affinity purification of biotinylated and nonbiotinylated forms of double-tagged core RNA polymerase II from Saccharomyces cerevisiae
  2. Kireeva, M. L.; Lubkowska, L.; Komissarova, N.; Kashlev, M.
  3. RNA POLYMERASES AND ASSOCIATED FACTORS, PT C. 2003; 370 : 138-155.
  1. 7.   Engineering of elongation complexes of bacterial and yeast RNA polymerases
  2. Komissarova, N.; Kireeva, M. L.; Becker, J.; Sidorenkov, I.; Kashlev, M.
  3. RNA POLYMERASES AND ASSOCIATED FACTORS, PT D. 2003; 371 : 233-251.
  1. 8.   Strategies and methods of cross-linking of RNA polymerase active center
  2. Mustaev, A.; Zaychikov, E.; Grachev, M.; Kozlov, M.; Severinov, K.; Epshtein, V.; Korzheva, N.; Bereshchenko, O.; Markovtsov, V.; Lukhtanov, E.; Tsarev, I.; Maximova, T.; Kashlev, M.; Bass, I.; Nikiforov, V.; Goldfarb, A.
  3. RNA POLYMERASES AND ASSOCIATED FACTORS, PT D. 2003; 371 : 191-206.
  1. 9.   Assay of the fate of the nucleosome during transcription by RNA polymerase II
  2. Walter, W.; Kireeva, M. L.; Tchernajenko, V.; Kashlev, M.; Studitsky, V. M.
  3. RNA POLYMERASES AND ASSOCIATED FACTORS, PT D. 2003; 371 : 564-577.
  1. 10.   The palm subdomain-based active site is internally permuted in viral RNA-dependent RNA polymerases of an ancient lineage
  2. Gorbalenya, A. E.; Pringle, F. M.; Zeddam, J. L.; Luke, B. T.; Cameron, C. E.; Kalmakoff, J.; Hanzlik, T. N.; Gordon, K. H. J.; Ward, V. K.
  3. Journal of Molecular Biology. 2002 324(1): 47-62.
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