Abstract
The shut-off of RNA synthesis in chicken embryo cells, after infection with vesicular stomatitis virus, is partially due to a reduced capacity of the infected cells to transport uridine. Permeability to uridine decreases exponentially after infection. This loss of ability to transport uridine may be caused either by structural components of the input virions or may result from the expression of the viral gene products. In the latter case, only minor levels of viral transcription is sufficient to modify cellular permeability, since, even at low multiplicities, RNA minus temperature-sensitive (ts) mutants of vesicular stomatitis virus bring about a significant diminution of uridine incorporation in cells infected under nonpermissive conditions. Experiments with mutants of group III suggest that the M protein of the viral envelope may play a role in the sequence of events that modifies uridine transport. In addition to this cause of the diminution of incorporation of uridine by infected cells, another mechanism is noted which requires protein synthesis.
MeSH Terms
Animals
Biological Transport, Active
Cell Membrane Permeability
Cells, Cultured
Chick Embryo
Cycloheximide/pharmacology
Half-Life
Mutation
RNA/biosynthesis
Radiation Effects
Temperature
Tritium
Ultraviolet Rays
Uridine/metabolism
Vesicular stomatitis Indiana virus/growth & development,radiation effects
Chemicals
Tritium
RNA
Cycloheximide
Uridine
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Genty N
References (28)
28 references, click to expand
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