Search Results - "FELDMAN, L. T"

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  1. 1

    Long-term promoter activity during herpes simplex virus latency by Lokensgard, J R, Bloom, D C, Dobson, A T, Feldman, L T

    Published in Journal of Virology (01-11-1994)
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  2. 2

    Herpes Simplex Virus Latency-Associated Transcript is a Stable Intron by Farrell, Michael J., Dobson, Anthony T., Feldman, Lawrence T.

    “…The latency-associated transcript (LAT) is the major viral transcript detected by in situ hybridization of mouse and human sensory ganglia latently infected…”
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  3. 3

    Physical characterization of the herpes simplex virus latency-associated transcript in neurons by WAGNER, E. K, GAYATHRI DEVI-RAO, FELDMAN, L. T, DOBSON, A. T, YI-FAN ZHANG, FLANAGAN, W. M, STEVENS, J. G

    Published in Journal of Virology (01-04-1988)
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  4. 4

    Identification of the latency-associated transcript promoter by expression of rabbit beta-globin mRNA in mouse sensory nerve ganglia latently infected with a recombinant herpes simplex virus by Dobson, A T, Sederati, F, Devi-Rao, G, Flanagan, W M, Farrell, M J, Stevens, J G, Wagner, E K, Feldman, L T

    Published in Journal of Virology (01-09-1989)
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  5. 5

    A 348-base-pair region in the latency-associated transcript facilitates herpes simplex virus type 1 reactivation by Bloom, D C, Hill, J M, Devi-Rao, G, Wagner, E K, Feldman, L T, Stevens, J G

    Published in Journal of Virology (01-04-1996)
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  6. 6

    The latency-associated promoter of herpes simplex virus type 1 requires a region downstream of the transcription start site for long-term expression during latency by Lokensgard, J R, Berthomme, H, Feldman, L T

    Published in Journal of Virology (01-09-1997)
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  7. 7

    Common control of the heat shock gene and early adenovirus genes: evidence for a cellular E1A-like activity by Imperiale, M J, Kao, H T, Feldman, L T, Nevins, J R, Strickland, S

    Published in Molecular and Cellular Biology (01-05-1984)
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  8. 8

    Pathways of viral gene expression during acute neuronal infection with HSV-1 by Margolis, T P, Sedarati, F, Dobson, A T, Feldman, L T, Stevens, J G

    Published in Virology (New York, N.Y.) (01-07-1992)
    “…Pathways of viral gene expression were investigated during the acute phase of sensory ganglionic infection with HSV-1. To facilitate these studies we…”
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  9. 9

    Spontaneous Molecular Reactivation of Herpes Simplex Virus Type 1 Latency in Mice by Feldman, Lawrence T., Ellison, Aaron R., Voytek, Cynthia C., Yang, Li, Krause, Philip, Margolis, Todd P.

    “…Infection of the mouse trigeminal ganglia (TG) is the most commonly used model for the study of herpes simplex virus type 1 (HSV-1) latency. Its popularity is…”
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  10. 10

    Enhancer and Long-Term Expression Functions of Herpes Simplex Virus Type 1 Latency-Associated Promoter Are both Located in the Same Region by Berthomme, H, Thomas, J, Texier, P, Epstein, A, Feldman, L T

    Published in Journal of Virology (01-05-2001)
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  11. 11

    Effect of the transcription start region of the herpes simplex virus type 1 latency-associated transcript promoter on expression of productively infected neurons in vivo by FARRELL, M. J, MARGOLIS, T. D, GOMES, W. A, FELDMAN, L. T

    Published in Journal of Virology (01-09-1994)
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  12. 12

    Decreased reporter gene expression during latent infection with HSV LAT promoter constructs by Margolis, T P, Bloom, D C, Dobson, A T, Feldman, L T, Stevens, J G

    Published in Virology (New York, N.Y.) (01-12-1993)
    “…The latency-associated transcripts (LAT), which code from an 8.5 kb segment of the internal repeat region of the HSV genome, are the only viral transcripts…”
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  13. 13

    In vivo deletion analysis of the herpes simplex virus type 1 latency-associated transcript promoter by Dobson, A T, Margolis, T P, Gomes, W A, Feldman, L T

    Published in Journal of Virology (01-04-1995)
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  14. 14

    The herpes simplex virus type 1 reactivation function lies outside the latency-associated transcript open reading frame ORF-2 by FARRELL, M. J, HILL, J. M, MARGOLIS, T. P, STEVENS, J. G, WAGNER, E. K, FELDMAN, L. T

    Published in Journal of Virology (01-06-1993)
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  15. 15

    Activation of Early Adenovirus Transcription by the Herpesvirus Immediate Early Gene: Evidence for a Common Cellular Control Factor by Feldman, Lawrence T., Imperiale, Michael J., Nevins, Joseph R.

    “…Adenovirus mutants carrying a defective E1A gene, such as dl312, are unable to express any of the early viral genes upon infection of HeLa cells. However,…”
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  16. 16

    Expression of the lacZ Reporter Gene in the Rat Basal Forebrain, Hippocampus, and Nigrostriatal Pathway Using a Nonreplicating Herpes Simplex Vector by Maidment, Nigel T., Tan, Aiko M., Bloom, David C., Anton, Benito, Feldman, Lawrence T., Stevens, Jack G.

    Published in Experimental neurology (01-05-1996)
    “…We recently demonstrated the efficacy of a nonreplicating herpes simplex type 1 virus construct, employing the Moloney murine leukemia virus long terminal…”
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  17. 17

    Activation of gene expression by adenovirus and herpesvirus regulatory genes acting in trans and by a cis-acting adenovirus enhancer element by Imperiale, M J, Feldman, L T, Nevins, J R

    Published in Cell (01-01-1983)
    “…A plasmid containing the adenovirus E2 gene, a gene normally requiring E1A-mediated induction during viral infection, is expressed very poorly upon…”
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  18. 18

    Transcription of Class III Genes Activated by Viral Immediate Early Proteins by Gaynor, Richard B., Feldman, Larry T., Berk, Arnold J.

    “…The adenovirus E1A and pseudorabies virus immediate early (IE) proteins induce transcription from transfected viral and nonviral genes transcribed by RNA…”
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  19. 19

    Binding of the pseudorabies virus immediate-early protein to single-stranded DNA by Chlan, C.A, Coulter, C, Feldman, L.T

    Published in Journal of Virology (01-06-1987)
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  20. 20

    Targeting and gene expression in spinal cord motor neurons following intramuscular inoculation of an HSV-1 vector by Keir, S D, Mitchell, W J, Feldman, L T, Martin, J R

    Published in Journal of neurovirology (01-09-1995)
    “…One problem in devising strategies of gene transfer to the nervous system is targeting specific neuronal populations. To evaluate the potential for using…”
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