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Y.S. Lee and B.L. Seong (1996) Mutational analysis of influenza B virus RNA transcription in vitro. J.Virol. 70, 1232. B.L. Seong and K.H. Lee (1996) Position 4 nucleotide at the 3' end of influenza A virion RNA as a cis-acting signal for segment-specific regulation of RNA synthesis. Options for the control of influenza III. Elsevier Science. 1996. p410-413. B.L. Seong and Y.S. Lee (1996) Specificity between the influenza A and B viruses: the role of panhandle region of the influenza virion RNA. Options for the control of influenza III. Elsevier Science. 1996. p414-418. D.C. Pritlove, E. Fodor, B.L. Seong and G.G. Brownlee (1995) In vitro transciption and polymerase binding studies of the termini of influenza A viurs cRNA: evidence for a cRNA panhandle. J.Gen.Virol. 76, 2205. B.L. Seong (1993) Influencing the influenza virus: Genetic analysis and engineering of the negative-sense RNA genome. Inf. Agents Dis. 2, 17. E. Fodor, B.L. Seong and G.G. Brownlee (1993) Photochemical crosslinking of influenza A polymerase to its virion RNA promoter defines a polymerase binding site at residues 9 to 12 of the promoter. J.Gen.Virol. 74, 1327 B.L. Seong and G.G. Brownlee (1992) Nucleotides 9 to 11 of the influenza A virion RNA promoter are crucial for activity in vitro. J.Gen.Virol. 73, 3115 B.L. Seong and G.G. Brownlee (1992) A new method for reconstituting influenza polymerase and RNA in vitro: A study of promoter elements for cRNA and vRNA synthesis in vitro and viral rescue in vivo. Virol. 186, 247 B.L. Seong, M. Kobayashi, K. Nagata, G.G. Brownlee and A. Ishihama (1992) Comparison of two reconstitution system for in vitro transcription and replication of influenza virus. J. Biochem. 111, 496 M.R. Dyson, C.P. Lee, N. Mandal, B.L. Seong, U. Varshney and U.L. RajBhandary(1993) Identity of a prokaryotic initiator tRNA: The Translational Apparatus. Nierhaus et al eds. Plenum Press, New York p23 C.P. Lee, B.L. Seong and U.L. RajBhandary (1991) Structural and sequence elements important for recognition of E.coli formylmethionine tRNA by methionyl-tRNA transformylase are clustered in the acceptor stem. J.Biol.Chem. 226, 18012 U. Varshney, C.P. Lee, B.L. Seong and U.L. RajBhandary (1991) Mutants of initiator tRNA that function both as initiators and elongators. J.Biol.Chem. 266, 18018 B.L. Seong, C.P. Lee and U.L. RajBhandary (1991) Suppression of amber codons in vivo as evidence that mutants derived from E.coli initiator tRNA can act at the step of elongation of protein synthesis. J.Biol.Chem. 246, 6504 B.L. Seong and U.L. RajBhandary (1987) E.coli formylmethionine tRNA: Mutations in GGG/CCC sequence conserved in anticodon stem of initiator tRNAs affect initiation of protein synthesis and conformation of anticodon loop. Proc.Natl.Acad.Sci.USA 84, 334 B.L. Seong and U.L. RajBhandary (1987) Mutants of E.coli formylmethionine tRNA: a single base change enables initiator tRNA to act as an elongator in vitro. Proc.Natl.Acad.Sci.USA 84, 8859 B.L. Seong, H.J. Son, T.I. Mheen, Y.H. Park and M.H. Han (1985) Enzymatic oxidation of rifamycins by a microorganism of the genus Humicola. J.Ferment.Technol. 63, 515 M.H. Han, B.L. Seong, H.J. Son and T.I. Mheen (1983) Rifamycin B oxidase from Monocillium species: a new type of diphenol oxidase. FEBS Lett. 151, 36 B.L. Seong, H.J. Son, T.I. Mheen and M.H. Han (1983) Microbial transformation of rifamycin B: a new synthetic approach to rifamycin derivatives. J.Antibiotics 36, 1402 B.L. Seong and M.H. Han (1982) A facile preparation of rifamycin derivatives by use of manganese dioxide. Chem.Lett. 5, 627 J.M. Park, C.Y. Choi, B.L. Seong and M.H. Han (1982) Effect of external mass transfer in a recirculation batch reactor system for immobilized penicillin amidase. Biotechnol.Bioeng. 24, 2215 J.M. Park, C.Y. Choi, B.L. Seong and M.H. Han (1982) Production of 6-aminopenicillanic acid by a multi-stage tubular reactor packed with immobilized penicillin amidase. Biotechnol.Bioeng. 24, 1623 H.J. Son, T.I. Mheen, B.L. Seong and M.H. Han (1982) Studies on microbial penicillin amidase (4). Production of penicillin amidase for a partially constitutive mutant of Bacillus megaterium. J.Gen.Appl.Microbiol. 28, 281 B.L. Seong, M.H. Han, J.M. Park and C.Y. Choi (1981) A graphical method of determining external diffusion free Michaelis-Menten constant for immobilized enzyme in a packed bed reactor. Biotechnol. Lett. 3,607
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