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Journal of Virology
|
June 17, 1998
The length and sequence composition of vesicular stomatitis virus intergenic regions affect mRNA levels and the site of transcript initiation
E A Stillman, M A Whitt
Journal of Virology
|
February 9, 2000
The membrane-proximal stem region of vesicular stomatitis virus G protein confers efficient virus assembly
C S Robison, M A Whitt
Journal of Virology
|
August 10, 1999
Transcript initiation and 5'-end modifications are separable events during vesicular stomatitis virus transcription
E A Stillman, M A Whitt
Journal of Virology
|
March 1, 1997
Mutational analyses of the intergenic dinucleotide and the transcriptional start sequence of vesicular stomatitis virus (VSV) define sequences required for efficient termination and initiation of VSV transcripts
E A Stillman, M A Whitt
Virology
|
February 10, 1998
Attenuation of recombinant vesicular stomatitis viruses encoding mutant glycoproteins demonstrate a critical role for maintaining a high pH threshold for membrane fusion in viral fitness
B L Fredericksen, M A Whitt
Virology
|
December 1, 1991
Fatty acid acylation is not required for membrane fusion activity or glycoprotein assembly into VSV virions
M A Whitt, J K Rose
Journal of Virology
|
March 1, 1995
Vesicular stomatitis virus glycoprotein mutations that affect membrane fusion activity and abolish virus infectivity
B L Fredericksen, M A Whitt
Virology
|
March 1, 1996
Mutations at two conserved acidic amino acids in the glycoprotein of vesicular stomatitis virus affect pH-dependent conformational changes and reduce the pH threshold for membrane fusion
B L Fredericksen, M A Whitt
Virology
|
March 1, 1988
A phosphorylated 34-kDa protein and a subpopulation of polyhedrin are thiol linked to the carbohydrate layer surrounding a baculovirus occlusion body
M A Whitt, J S Manning
Journal of Virology
|
September 1, 1989
Glycoprotein cytoplasmic domain sequences required for rescue of a vesicular stomatitis virus glycoprotein mutant
M A Whitt, L Chong, J K Rose
Page
of 3
Search research articles
Search
Showing results (1-10 of 25) with videos related to
Sort By:
Page
of 3
Journal of Virology
|
June 17, 1998
The length and sequence composition of vesicular stomatitis virus intergenic regions affect mRNA levels and the site of transcript initiation
E A Stillman, M A Whitt
Journal of Virology
|
February 9, 2000
The membrane-proximal stem region of vesicular stomatitis virus G protein confers efficient virus assembly
C S Robison, M A Whitt
Journal of Virology
|
August 10, 1999
Transcript initiation and 5'-end modifications are separable events during vesicular stomatitis virus transcription
E A Stillman, M A Whitt
Journal of Virology
|
March 1, 1997
Mutational analyses of the intergenic dinucleotide and the transcriptional start sequence of vesicular stomatitis virus (VSV) define sequences required for efficient termination and initiation of VSV transcripts
E A Stillman, M A Whitt
Virology
|
February 10, 1998
Attenuation of recombinant vesicular stomatitis viruses encoding mutant glycoproteins demonstrate a critical role for maintaining a high pH threshold for membrane fusion in viral fitness
B L Fredericksen, M A Whitt
Virology
|
December 1, 1991
Fatty acid acylation is not required for membrane fusion activity or glycoprotein assembly into VSV virions
M A Whitt, J K Rose
Journal of Virology
|
March 1, 1995
Vesicular stomatitis virus glycoprotein mutations that affect membrane fusion activity and abolish virus infectivity
B L Fredericksen, M A Whitt
Virology
|
March 1, 1996
Mutations at two conserved acidic amino acids in the glycoprotein of vesicular stomatitis virus affect pH-dependent conformational changes and reduce the pH threshold for membrane fusion
B L Fredericksen, M A Whitt
Virology
|
March 1, 1988
A phosphorylated 34-kDa protein and a subpopulation of polyhedrin are thiol linked to the carbohydrate layer surrounding a baculovirus occlusion body
M A Whitt, J S Manning
Journal of Virology
|
September 1, 1989
Glycoprotein cytoplasmic domain sequences required for rescue of a vesicular stomatitis virus glycoprotein mutant
M A Whitt, L Chong, J K Rose
Page
of 3