J Virol, August 1998, p. 6325-6331, Vol. 72, No. 8
0022-538X/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.

andDepartment of Genetics, University of Georgia, Athens, Georgia 30602
Received 11 February 1998/Accepted 21 April 1998
Mouse adenovirus type 1 (MAV-1) mutants with deletions of conserved
regions of early region 1A (E1A) or with point mutations that eliminate
translation of E1A were used to determine the role of E1A in MAV-1
replication. MAV-1 E1A mutants expressing no E1A protein grew to
titers comparable to wild-type MAV-1 titers on mouse fibroblasts (3T6
fibroblasts and fibroblasts derived from Rb+/+,
Rb+/
, and Rb
/
transgenic embryos). To
test the hypothesis that E1A could induce a quiescent cell to reenter
the cell cycle, fibroblasts were serum starved to stop DNA replication
and cellular replication and then infected with the E1A mutant and
wild-type viruses. All grew to equivalent titers. Steady-state levels
of MAV-1 early mRNAs (E1A, E1B, E2, E3, and E4) from 3T6 cells
infected with wild-type or E1A mutant virus were examined by Northern
analysis. Steady-state levels of mRNAs from the mutant-infected
cells were comparable to or greater than the levels found in wild-type
virus infections for most of the early regions and for two late genes. The E2 mRNA levels were slightly reduced in all mutant infections relative to wild-type infections. E1A mRNA was not detected from infections with the MAV-1 E1A null mutant, pmE109, or from
infections with similar MAV-1 E1A null mutants, pmE112 and
pmE113. The implications for the lack of a requirement of
E1A in cell culture are discussed.
Present address: Department of Molecular Microbiology and
Immunology, St. Louis University Medical Center, St. Louis, MO 63104.
Present address: Department of Neuropharmacology, The Scripps
Research Institute, La Jolla, CA 92037.
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