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Proceedings of the National Academy of Sciences of the United States of America
|
August 1, 1982
Activation of early adenovirus transcription by the herpesvirus immediate early gene: evidence for a common cellular control factor
L T Feldman, M J Imperiale, J R Nevins
Nucleic Acids Research
|
July 1, 1997
The POU-domain factor Brn-3.0 recognizes characteristic sites in the herpes simplex virus genome
E E Turner, J M Rhee, L T Feldman
The Journal of General Virology
|
January 1, 1980
Expression of the genome of defective interfering pseudorabies virions in the presence or absence of helper functions provided by standard virus
F J Rixon, L T Feldman, T Ben-Porat
Science (New York, N.Y.)
|
October 25, 1985
Transcription of class III genes activated by viral immediate early proteins
R B Gaynor, L T Feldman, A J Berk
Journal of Virology
|
April 5, 2001
Enhancer and long-term expression functions of herpes simplex virus type 1 latency-associated promoter are both located in the same region
H Berthomme, J Thomas, P Texier, et al.
Journal of Virology
|
March 23, 2000
Evidence for a bidirectional element located downstream from the herpes simplex virus type 1 latency-associated promoter that increases its activity during latency
H Berthomme, J Lokensgard, L Yang, et al.
Journal of Virology
|
November 1, 1994
Long-term promoter activity during herpes simplex virus latency
J R Lokensgard, D C Bloom, A T Dobson, et al.
Virology
|
January 15, 1982
Control of abundance of immediate-early mRNA in herpesvirus (pseudorabies)-infected cells
L T Feldman, J M Demarchi, T Ben-Porat, et al.
Journal of Virology
|
September 1, 1994
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
M J Farrell, T P Margolis, W A Gomes, et al.
Journal of Neurovirology
|
September 1, 1995
Targeting and gene expression in spinal cord motor neurons following intramuscular inoculation of an HSV-1 vector
S D Keir, W J Mitchell, L T Feldman, et al.
Page
of 4
Search research articles
Search
Showing results (11-20 of 37) with videos related to
Sort By:
Page
of 4
Proceedings of the National Academy of Sciences of the United States of America
|
August 1, 1982
Activation of early adenovirus transcription by the herpesvirus immediate early gene: evidence for a common cellular control factor
L T Feldman, M J Imperiale, J R Nevins
Nucleic Acids Research
|
July 1, 1997
The POU-domain factor Brn-3.0 recognizes characteristic sites in the herpes simplex virus genome
E E Turner, J M Rhee, L T Feldman
The Journal of General Virology
|
January 1, 1980
Expression of the genome of defective interfering pseudorabies virions in the presence or absence of helper functions provided by standard virus
F J Rixon, L T Feldman, T Ben-Porat
Science (New York, N.Y.)
|
October 25, 1985
Transcription of class III genes activated by viral immediate early proteins
R B Gaynor, L T Feldman, A J Berk
Journal of Virology
|
April 5, 2001
Enhancer and long-term expression functions of herpes simplex virus type 1 latency-associated promoter are both located in the same region
H Berthomme, J Thomas, P Texier, et al.
Journal of Virology
|
March 23, 2000
Evidence for a bidirectional element located downstream from the herpes simplex virus type 1 latency-associated promoter that increases its activity during latency
H Berthomme, J Lokensgard, L Yang, et al.
Journal of Virology
|
November 1, 1994
Long-term promoter activity during herpes simplex virus latency
J R Lokensgard, D C Bloom, A T Dobson, et al.
Virology
|
January 15, 1982
Control of abundance of immediate-early mRNA in herpesvirus (pseudorabies)-infected cells
L T Feldman, J M Demarchi, T Ben-Porat, et al.
Journal of Virology
|
September 1, 1994
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
M J Farrell, T P Margolis, W A Gomes, et al.
Journal of Neurovirology
|
September 1, 1995
Targeting and gene expression in spinal cord motor neurons following intramuscular inoculation of an HSV-1 vector
S D Keir, W J Mitchell, L T Feldman, et al.
Page
of 4