A Transcriptionally Active Subgenomic Promoter Supports Homologous Crossovers in a Plus-Strand RNA Virus
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[1] C. Kao,et al. Enhancer-Like Activity of a Brome Mosaic Virus RNA Promoter , 2003, Journal of Virology.
[2] A. Jetzt,et al. Human Immunodeficiency Virus Type 1 Recombination: Rate, Fidelity, and Putative Hot Spots , 2002, Journal of Virology.
[3] T. Dreher,et al. tRNA elements mediate the assembly of an icosahedral RNA virus , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[4] N. Rauffer‐Bruyère,et al. Studies on functional interaction between brome mosaic virus replicase proteins during RNA recombination, using combined mutants in vivo and in vitro. , 2001, Virology.
[5] R. Bambara,et al. The Kissing Hairpin Sequence Promotes Recombination within the HIV-I 5′ Leader Region* , 2001, The Journal of Biological Chemistry.
[6] J. Barr,et al. Polymerase Slippage at Vesicular Stomatitis Virus Gene Junctions To Generate Poly(A) Is Regulated by the Upstream 3′-AUAC-5′ Tetranucleotide: Implications for the Mechanism of Transcription Termination , 2001, Journal of Virology.
[7] C. Kao,et al. Factors regulating template switch in vitro by viral RNA-dependent RNA polymerases: Implications for RNA–RNA recombination , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[8] W. Miller,et al. Synthesis of subgenomic RNAs by positive-strand RNA viruses. , 2000, Virology.
[9] R. Olsthoorn,et al. A conserved hairpin structure in Alfamovirus and Bromovirus subgenomic promoters is required for efficient RNA synthesis in vitro. , 2000, RNA.
[10] J. Bujarski,et al. Frequent Homologous Recombination Events between Molecules of One RNA Component in a Multipartite RNA Virus , 2000, Journal of Virology.
[11] V. Agol,et al. Nonreplicative RNA Recombination in Poliovirus , 1999, Journal of Virology.
[12] P. D. Nagy,et al. RNA elements required for RNA recombination function as replication enhancers in vitro and in vivo in a plus-strand RNA virus. , 1999, The EMBO journal.
[13] P. Ahlquist,et al. A Brome Mosaic Virus Intergenic RNA3 Replication Signal Functions with Viral Replication Protein 1a To Dramatically Stabilize RNA In Vivo , 1999, Journal of Virology.
[14] P. D. Nagy,et al. Mapping sequences active in homologous RNA recombination in brome mosaic virus: prediction of recombination hot spots. , 1999, Virology.
[15] C. Kao,et al. Subgenomic RNA promoters dictate the mode of recognition by bromoviral RNA-dependent RNA polymerases. , 1998, Virology.
[16] P. V. Hippel,et al. An Integrated Model of the Transcription Complex in Elongation, Termination, and Editing , 1998 .
[17] R. W. Siegel,et al. Mechanistic analysis of RNA synthesis by RNA-dependent RNA polymerase from two promoters reveals similarities to DNA-dependent RNA polymerase. , 1998, RNA.
[18] R. W. Siegel,et al. Sequence-specific recognition of a subgenomic RNA promoter by a viral RNA polymerase. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[19] P. D. Nagy,et al. Engineering of homologous recombination hotspots with AU-rich sequences in brome mosaic virus , 1997, Journal of virology.
[20] P. D. Nagy,et al. A mutation in the putative RNA polymerase gene inhibits nonhomologous, but not homologous, genetic recombination in an RNA virus. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[21] J. Bujarski. Introduction: Experimental systems of genetic recombination and defective RNA formation in RNA viruses , 1996 .
[22] J. Bujarski,et al. Foreign complementary sequences facilitate genetic RNA recombination in brome mosaic virus. , 1995, Virology.
[23] P. D. Nagy,et al. Efficient system of homologous RNA recombination in brome mosaic virus: sequence and structure requirements and accuracy of crossovers , 1995, Journal of virology.
[24] R. Allison,et al. Recombination between viral RNA and transgenic plant transcripts. , 1994, Science.
[25] P. D. Nagy,et al. Targeting the site of RNA-RNA recombination in brome mosaic virus with antisense sequences. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[26] A. Simon,et al. Sequences and structures required for recombination between virus-associated RNAs. , 1993, Science.
[27] P. D. Nagy,et al. Genetic recombination in brome mosaic virus: effect of sequence and replication of RNA on accumulation of recombinants , 1992, Journal of virology.
[28] P. Ahlquist. Bromovirus RNA replication and transcription. , 1992, Current opinion in genetics & development.
[29] P. Ahlquist,et al. Characterization and engineering of sequences controlling in vivo synthesis of brome mosaic virus subgenomic RNA , 1988, Journal of virology.
[30] T. Dreher,et al. Mutational analysis of the core and modulator sequences of the BMV RNA3 subgenomic promoter. , 1988, Nucleic acids research.
[31] P. Ahlquist,et al. High efficiency T7 polymerase synthesis of infectious RNA from cloned brome mosaic virus cdna and effects of 5' extensions on transcript infectivity. , 1987, Virology.
[32] W. Miller,et al. Synthesis of brome mosaic virus subgenomic RNA in vitro by internal initiation on (−)-sense genomic RNA , 1985, Nature.
[33] M. Figlerowicz,et al. RNA recombination in brome mosaic virus, a model plus strand RNA virus. , 1998, Acta biochimica Polonica.
[34] M. Bar-joseph,et al. Subgenomic RNAs: The Possible Building Blocks for Modular Recombination ofClosteroviridaeGenomes☆ , 1997 .
[35] S. Dinesh-Kumar,et al. Luteovirus Gene Expression , 1995 .