Rank |
Title |
Journal |
Year |
PubWeight™‹?› |
1
|
An adenovirus type 5 early gene function regulates expression of other early viral genes.
|
Proc Natl Acad Sci U S A
|
1979
|
13.21
|
2
|
The sequence 5'-AAUAAA-3'forms parts of the recognition site for polyadenylation of late SV40 mRNAs.
|
Cell
|
1981
|
12.26
|
3
|
Isolation of adenovirus type 5 host range deletion mutants defective for transformation of rat embryo cells.
|
Cell
|
1979
|
10.95
|
4
|
Transcriptional repression by YY1, a human GLI-Krüppel-related protein, and relief of repression by adenovirus E1A protein.
|
Cell
|
1991
|
8.31
|
5
|
The adenovirus type 5 E1A transcriptional control region contains a duplicated enhancer element.
|
Cell
|
1983
|
8.19
|
6
|
Helper-free stocks of recombinant adeno-associated viruses: normal integration does not require viral gene expression.
|
J Virol
|
1989
|
6.69
|
7
|
Second-strand synthesis is a rate-limiting step for efficient transduction by recombinant adeno-associated virus vectors.
|
J Virol
|
1996
|
6.22
|
8
|
Adenovirus VAI RNA is required for efficient translation of viral mRNAs at late times after infection.
|
Cell
|
1982
|
5.80
|
9
|
Transcriptional control regions of the adenovirus VAI RNA gene.
|
Cell
|
1980
|
5.64
|
10
|
Nucleo-cytoplasmic shuttling of the hdm2 oncoprotein regulates the levels of the p53 protein via a pathway used by the human immunodeficiency virus rev protein.
|
EMBO J
|
1998
|
4.98
|
11
|
Adenovirus VAI RNA antagonizes the antiviral action of interferon by preventing activation of the interferon-induced eIF-2 alpha kinase.
|
Cell
|
1986
|
4.72
|
12
|
A recombinant plasmid from which an infectious adeno-associated virus genome can be excised in vitro and its use to study viral replication.
|
J Virol
|
1987
|
4.57
|
13
|
Adenovirus early region 4 encodes functions required for efficient DNA replication, late gene expression, and host cell shutoff.
|
J Virol
|
1985
|
4.35
|
14
|
Cellular gene expression altered by human cytomegalovirus: global monitoring with oligonucleotide arrays.
|
Proc Natl Acad Sci U S A
|
1998
|
4.33
|
15
|
YY1 is an initiator sequence-binding protein that directs and activates transcription in vitro.
|
Nature
|
1991
|
4.30
|
16
|
Isolation of deletion and substitution mutants of adenovirus type 5.
|
Cell
|
1978
|
4.29
|
17
|
New region of the simian virus 40 genome required for efficient viral transformation.
|
Proc Natl Acad Sci U S A
|
1978
|
4.24
|
18
|
Human cytomegalovirus IE1 and IE2 proteins block apoptosis.
|
J Virol
|
1995
|
4.22
|
19
|
Wild-type p53 binds to the TATA-binding protein and represses transcription.
|
Proc Natl Acad Sci U S A
|
1992
|
4.06
|
20
|
Adenovirus virus-associated RNA and translation control.
|
J Virol
|
1991
|
3.77
|
21
|
A 64 kd nuclear protein binds to RNA segments that include the AAUAAA polyadenylation motif.
|
Cell
|
1988
|
3.44
|
22
|
A multisubunit factor, CstF, is required for polyadenylation of mammalian pre-mRNAs.
|
Genes Dev
|
1990
|
3.43
|
23
|
A poly(A) addition site and a downstream termination region are required for efficient cessation of transcription by RNA polymerase II in the mouse beta maj-globin gene.
|
Proc Natl Acad Sci U S A
|
1987
|
3.38
|
24
|
Adenovirus early region 1B 58,000-dalton tumor antigen is physically associated with an early region 4 25,000-dalton protein in productively infected cells.
|
J Virol
|
1984
|
3.38
|
25
|
The adenovirus E1B-55K transforming polypeptide modulates transport or cytoplasmic stabilization of viral and host cell mRNAs.
|
Mol Cell Biol
|
1986
|
3.36
|
26
|
Definition of the boundaries of the origin of DNA replication in simian virus 40.
|
Nucleic Acids Res
|
1978
|
3.32
|
27
|
Use of differential display analysis to assess the effect of human cytomegalovirus infection on the accumulation of cellular RNAs: induction of interferon-responsive RNAs.
|
Proc Natl Acad Sci U S A
|
1997
|
3.25
|
28
|
Altered cellular mRNA levels in human cytomegalovirus-infected fibroblasts: viral block to the accumulation of antiviral mRNAs.
|
J Virol
|
2001
|
3.22
|
29
|
A subset of viral transcripts packaged within human cytomegalovirus particles.
|
Science
|
2000
|
3.19
|
30
|
Human cytomegalovirus tegument protein pp71 (ppUL82) enhances the infectivity of viral DNA and accelerates the infectious cycle.
|
J Virol
|
1997
|
3.16
|
31
|
Functional analysis of adenovirus-5 host-range deletion mutants defective for transformation of rat embryo cells.
|
Cold Spring Harb Symp Quant Biol
|
1980
|
3.15
|
32
|
Adenovirus tripartite leader sequence enhances translation of mRNAs late after infection.
|
Proc Natl Acad Sci U S A
|
1984
|
3.11
|
33
|
Adenovirus VAI RNA prevents phosphorylation of the eukaryotic initiation factor 2 alpha subunit subsequent to infection.
|
Proc Natl Acad Sci U S A
|
1985
|
3.09
|
34
|
A 32-kilodalton protein binds to AU-rich domains in the 3' untranslated regions of rapidly degraded mRNAs.
|
Mol Cell Biol
|
1991
|
3.05
|
35
|
Proteins associated with purified human cytomegalovirus particles.
|
J Virol
|
1996
|
3.01
|
36
|
Conversion of the lac repressor into an allosterically regulated transcriptional activator for mammalian cells.
|
Mol Cell Biol
|
1990
|
3.00
|
37
|
Impact of virus infection on host cell protein synthesis.
|
Annu Rev Biochem
|
1987
|
2.98
|
38
|
The 64-kilodalton subunit of the CstF polyadenylation factor binds to pre-mRNAs downstream of the cleavage site and influences cleavage site location.
|
Mol Cell Biol
|
1994
|
2.94
|
39
|
Interaction between transcription factors Sp1 and YY1.
|
Nature
|
1993
|
2.87
|
40
|
Transcriptional control regions: nucleotide sequence requirements for initiation by RNA polymerase II and III.
|
Curr Top Microbiol Immunol
|
1981
|
2.85
|
41
|
Adenovirus VAI RNA facilitates the initiation of translation in virus-infected cells.
|
Cell
|
1984
|
2.76
|
42
|
TATA-binding protein-independent initiation: YY1, TFIIB, and RNA polymerase II direct basal transcription on supercoiled template DNA.
|
Cell
|
1994
|
2.68
|
43
|
Blockage by adenovirus E4orf6 of transcriptional activation by the p53 tumor suppressor.
|
Science
|
1996
|
2.56
|
44
|
Nuclear export of the E1B 55-kDa and E4 34-kDa adenoviral oncoproteins mediated by a rev-like signal sequence.
|
EMBO J
|
1997
|
2.44
|
45
|
A uridylate tract mediates efficient heterogeneous nuclear ribonucleoprotein C protein-RNA cross-linking and functionally substitutes for the downstream element of the polyadenylation signal.
|
Mol Cell Biol
|
1990
|
2.43
|
46
|
Human cytomegalovirus infection inhibits cell cycle progression at multiple points, including the transition from G1 to S.
|
J Virol
|
1996
|
2.41
|
47
|
Replication of wild-type and mutant human cytomegalovirus in life-extended human diploid fibroblasts.
|
J Virol
|
2000
|
2.41
|
48
|
Deletion of the gene encoding the adenovirus 5 early region 1b 21,000-molecular-weight polypeptide leads to degradation of viral and host cell DNA.
|
J Virol
|
1984
|
2.39
|
49
|
A chimeric mammalian transactivator based on the lac repressor that is regulated by temperature and isopropyl beta-D-thiogalactopyranoside.
|
Proc Natl Acad Sci U S A
|
1991
|
2.35
|
50
|
Dissection of overlapping functions within the adenovirus type 5 E1A gene.
|
EMBO J
|
1984
|
2.30
|
51
|
Fragments of the simian virus 40 transforming gene facilitate transformation of rat embryo cells.
|
Proc Natl Acad Sci U S A
|
1982
|
2.29
|
52
|
Transcription termination within the E1A gene of adenovirus induced by insertion of the mouse beta-major globin terminator element.
|
Cell
|
1985
|
2.29
|
53
|
Nucleotide sequence analysis of viable deletion mutants lacking segments of the simian virus 40 genome coding for small t antigen.
|
J Virol
|
1979
|
2.28
|
54
|
Adenovirus E1A protein paradigm viral transactivator.
|
Annu Rev Genet
|
1989
|
2.23
|
55
|
Analysis of adenovirus early region 4-encoded polypeptides synthesized in productively infected cells.
|
J Virol
|
1987
|
2.20
|
56
|
Cocrystal structure of YY1 bound to the adeno-associated virus P5 initiator.
|
Proc Natl Acad Sci U S A
|
1996
|
2.16
|
57
|
The human 64-kDa polyadenylylation factor contains a ribonucleoprotein-type RNA binding domain and unusual auxiliary motifs.
|
Proc Natl Acad Sci U S A
|
1992
|
2.15
|
58
|
The adenovirus type 5 E1A enhancer contains two functionally distinct domains: one is specific for E1A and the other modulates all early units in cis.
|
Cell
|
1986
|
2.14
|
59
|
The C proteins of heterogeneous nuclear ribonucleoprotein complexes interact with RNA sequences downstream of polyadenylation cleavage sites.
|
Mol Cell Biol
|
1988
|
2.14
|
60
|
Adenoviral control regions activated by E1A and the cAMP response element bind to the same factor.
|
Proc Natl Acad Sci U S A
|
1988
|
2.14
|
61
|
Viral transactivating proteins.
|
Annu Rev Genet
|
1997
|
2.12
|
62
|
DNA binding sites for the transcriptional activator/repressor YY1.
|
Nucleic Acids Res
|
1995
|
2.10
|
63
|
Identification of a repeated sequence element required for efficient encapsidation of the adenovirus type 5 chromosome.
|
J Virol
|
1987
|
2.09
|
64
|
The adenovirus E4 17-kilodalton protein complexes with the cellular transcription factor E2F, altering its DNA-binding properties and stimulating E1A-independent accumulation of E2 mRNA.
|
J Virol
|
1990
|
2.07
|
65
|
Adenovirus type 5 virions can be assembled in vivo in the absence of detectable polypeptide IX.
|
J Virol
|
1981
|
2.07
|
66
|
Functional analysis of point mutations in the AAUAAA motif of the SV40 late polyadenylation signal.
|
Nucleic Acids Res
|
1989
|
1.99
|
67
|
Adenovirus E4orf4 protein binds to protein phosphatase 2A, and the complex down regulates E1A-enhanced junB transcription.
|
J Virol
|
1993
|
1.98
|
68
|
Increased anxiety of mice lacking the serotonin1A receptor.
|
Proc Natl Acad Sci U S A
|
1998
|
1.97
|
69
|
Adeno-associated virus P5 promoter contains an adenovirus E1A-inducible element and a binding site for the major late transcription factor.
|
J Virol
|
1989
|
1.96
|
70
|
The MDM2 oncoprotein binds specifically to RNA through its RING finger domain.
|
Mol Med
|
1996
|
1.94
|
71
|
Human cytomegalovirus UL69 protein is required for efficient accumulation of infected cells in the G1 phase of the cell cycle.
|
Proc Natl Acad Sci U S A
|
2000
|
1.91
|
72
|
Sequence-independent autoregulation of the adenovirus type 5 E1A transcription unit.
|
Mol Cell Biol
|
1985
|
1.90
|
73
|
Human cytomagalovirus IE1 and IE2 proteins are mutagenic and mediate "hit-and-run" oncogenic transformation in cooperation with the adenovirus E1A proteins.
|
Proc Natl Acad Sci U S A
|
1997
|
1.85
|
74
|
A multicomponent complex is required for the AAUAAA-dependent cross-linking of a 64-kilodalton protein to polyadenylation substrates.
|
Mol Cell Biol
|
1990
|
1.84
|
75
|
Localization of the adenovirus early region 1B 55-kilodalton protein during lytic infection: association with nuclear viral inclusions requires the early region 4 34-kilodalton protein.
|
J Virol
|
1991
|
1.84
|
76
|
E1B 55-kilodalton-associated protein: a cellular protein with RNA-binding activity implicated in nucleocytoplasmic transport of adenovirus and cellular mRNAs.
|
J Virol
|
1998
|
1.83
|
77
|
Construction of a viable SV40 variant containing two functional origins of DNA replication.
|
Cell
|
1978
|
1.83
|
78
|
An adenovirus early region 4 gene product is required for induction of the infection-specific form of cellular E2F activity.
|
Genes Dev
|
1989
|
1.82
|
79
|
Human cytomegalovirus UL36 protein is dispensable for viral replication in cultured cells.
|
J Virol
|
1999
|
1.80
|
80
|
Characterization of the human cytomegalovirus irs1 and trs1 genes: a second immediate-early transcription unit within irs1 whose product antagonizes transcriptional activation.
|
J Virol
|
1997
|
1.79
|
81
|
Early viral proteins in HeLa cells infected with adenovirus type 5 host range mutants.
|
Virology
|
1980
|
1.79
|
82
|
Oncogenic potential of the adenovirus E4orf6 protein.
|
Proc Natl Acad Sci U S A
|
1996
|
1.78
|
83
|
A mutation which alters initiation of transcription by RNA polymerase III on the Ad5 chromosome.
|
Cell
|
1979
|
1.75
|
84
|
Adenovirus terminal protein mediates both nuclear matrix association and efficient transcription of adenovirus DNA.
|
Genes Dev
|
1990
|
1.74
|
85
|
Two domains of p53 interact with the TATA-binding protein, and the adenovirus 13S E1A protein disrupts the association, relieving p53-mediated transcriptional repression.
|
Mol Cell Biol
|
1995
|
1.73
|
86
|
Human cytomegalovirus UL69 protein induces cells to accumulate in G1 phase of the cell cycle.
|
J Virol
|
1999
|
1.72
|
87
|
Adenovirus L1 52- and 55-kilodalton proteins are required for assembly of virions.
|
J Virol
|
1989
|
1.71
|
88
|
Relief of p53-mediated transcriptional repression by the adenovirus E1B 19-kDa protein or the cellular Bcl-2 protein.
|
Proc Natl Acad Sci U S A
|
1994
|
1.69
|
89
|
The adenovirus E1B 55 kd protein influences mRNA transport via an intranuclear effect on RNA metabolism.
|
EMBO J
|
1989
|
1.67
|
90
|
Simian virus 40 agnoprotein facilitates normal nuclear location of the major capsid polypeptide and cell-to-cell spread of virus.
|
J Virol
|
1986
|
1.67
|
91
|
Genetic analysis of adenoviruses.
|
Curr Top Microbiol Immunol
|
1984
|
1.66
|
92
|
Adenovirus early region 4 34-kilodalton protein directs the nuclear localization of the early region 1B 55-kilodalton protein in primate cells.
|
J Virol
|
1996
|
1.65
|
93
|
Adenovirus E4orf4 protein reduces phosphorylation of c-Fos and E1A proteins while simultaneously reducing the level of AP-1.
|
J Virol
|
1992
|
1.61
|
94
|
pIRS1 and pTRS1 are present in human cytomegalovirus virions.
|
J Virol
|
1997
|
1.61
|
95
|
Use of a membrane-localized green fluorescent protein allows simultaneous identification of transfected cells and cell cycle analysis by flow cytometry.
|
Cytometry
|
1997
|
1.56
|
96
|
Adenovirus E1A proteins interact with the cellular YY1 transcription factor.
|
J Virol
|
1995
|
1.52
|
97
|
SV40 mutant tsA1499 is heat-sensitive for lytic growth but generates cold-sensitive rat-cell transformants.
|
Cold Spring Harb Symp Quant Biol
|
1980
|
1.52
|
98
|
Adenovirus E1B 55-Mr polypeptide facilitates timely cytoplasmic accumulation of adeno-associated virus mRNAs.
|
J Virol
|
1988
|
1.48
|
99
|
Protection against apoptosis by the vaccinia virus SPI-2 (B13R) gene product.
|
J Virol
|
1996
|
1.48
|
100
|
Integration in vivo into simian virus 40 DNA of a sequence that resembles a certain family of genomic interspersed repeated sequences.
|
Proc Natl Acad Sci U S A
|
1980
|
1.46
|
101
|
Human adenovirus type 9-induced rat mammary tumors.
|
J Virol
|
1991
|
1.43
|
102
|
In silico structural and functional analysis of the human cytomegalovirus (HHV5) genome.
|
J Mol Biol
|
2001
|
1.42
|
103
|
Induction of transcription factor AP-1 by adenovirus E1A protein and cAMP.
|
Genes Dev
|
1989
|
1.42
|
104
|
Requirement for the adenovirus type 9 E4 region in production of mammary tumors.
|
Science
|
1992
|
1.41
|
105
|
E2F from adenovirus-infected cells binds cooperatively to DNA containing two properly oriented and spaced recognition sites.
|
Mol Cell Biol
|
1989
|
1.40
|
106
|
Efficient replication of adeno-associated virus type 2 vectors: a cis-acting element outside of the terminal repeats and a minimal size.
|
J Virol
|
2000
|
1.40
|
107
|
The adenovirus DNA-binding protein stimulates the rate of transcription directed by adenovirus and adeno-associated virus promoters.
|
J Virol
|
1990
|
1.39
|
108
|
cAMP acts in synergy with E1A protein to activate transcription of the adenovirus early genes E4 and E1A.
|
Genes Dev
|
1988
|
1.38
|
109
|
The serotonin 1a receptor gene contains a TATA-less promoter that responds to MAZ and Sp1.
|
J Biol Chem
|
1996
|
1.37
|
110
|
Human cytomegalovirus genome.
|
Curr Top Microbiol Immunol
|
2008
|
1.37
|
111
|
In vitro selection of RNA ligands for the ribosomal L22 protein associated with Epstein-Barr virus-expressed RNA by using randomized and cDNA-derived RNA libraries.
|
J Virol
|
1995
|
1.34
|
112
|
Adenovirus L1 52- and 55-kilodalton proteins are present within assembling virions and colocalize with nuclear structures distinct from replication centers.
|
J Virol
|
1992
|
1.34
|
113
|
Human cytomegalovirus inhibits transcription of the CC chemokine MCP-1 gene.
|
J Virol
|
1999
|
1.31
|
114
|
A viable simian virus 40 variant that carries a newly generated sequence reiteration in place of the normal duplicated enhancer element.
|
Proc Natl Acad Sci U S A
|
1984
|
1.29
|
115
|
Functional analysis of the nucleotide sequence surrounding the cap site for adenovirus type 5 region E1A messenger RNAs.
|
J Mol Biol
|
1983
|
1.29
|
116
|
A biochemical method for increasing the size of deletion mutations in simian virus 40 DNA.
|
J Mol Biol
|
1977
|
1.28
|
117
|
Physical location of host-range mutations of adenovirus type 5; deletion and marker-rescue mapping.
|
Virology
|
1980
|
1.27
|
118
|
YY1 transcriptional initiator: protein interactions and association with a DNA site containing unpaired strands.
|
Proc Natl Acad Sci U S A
|
1996
|
1.27
|
119
|
A second domain of simian virus 40 T antigen in which mutations can alter the cellular localization of the antigen.
|
Mol Cell Biol
|
1986
|
1.25
|
120
|
An adenovirus mutant unable to express VAI RNA displays different growth responses and sensitivity to interferon in various host cell lines.
|
Mol Cell Biol
|
1986
|
1.22
|
121
|
The adenovirus L3 23-kilodalton proteinase cleaves the amino-terminal head domain from cytokeratin 18 and disrupts the cytokeratin network of HeLa cells.
|
J Virol
|
1993
|
1.20
|
122
|
Induced heat shock mRNAs escape the nucleocytoplasmic transport block in adenovirus-infected HeLa cells.
|
Mol Cell Biol
|
1987
|
1.19
|
123
|
In vivo identification of sequence elements required for normal function of the adenovirus major late transcriptional control region.
|
Nucleic Acids Res
|
1986
|
1.17
|
124
|
Interaction between YY1 and the retinoblastoma protein. Regulation of cell cycle progression in differentiated cells.
|
J Biol Chem
|
2000
|
1.16
|
125
|
A polymerase chain reaction mediated by a single primer: cloning of genomic sequences adjacent to a serotonin receptor protein coding region.
|
Nucleic Acids Res
|
1991
|
1.15
|
126
|
Transformation by adenovirus early region 2A temperature-sensitive mutants and their revertants.
|
Virology
|
1981
|
1.13
|
127
|
A protein kinase is present in a complex with adenovirus E1A proteins.
|
Proc Natl Acad Sci U S A
|
1991
|
1.09
|
128
|
Metabolomics in drug target discovery.
|
Cold Spring Harb Symp Quant Biol
|
2011
|
1.05
|
129
|
Isolation of differentially expressed cDNAs from p53-dependent apoptotic cells: activation of the human homologue of the Drosophila peroxidasin gene.
|
Biochem Biophys Res Commun
|
1999
|
1.04
|
130
|
Activation of the adenovirus major late promoter by transcription factors MAZ and Sp1.
|
J Virol
|
1997
|
1.00
|
131
|
Transcription of adenovirus and HeLa cell genes in the presence of drugs that inhibit topoisomerase I and II function.
|
Nucleic Acids Res
|
1990
|
0.98
|
132
|
The adenovirus type 5 i-leader open reading frame functions in cis to reduce the half-life of L1 mRNAs.
|
J Virol
|
1990
|
0.98
|
133
|
Induction of c-fos mRNA and AP-1 DNA-binding activity by cAMP in cooperation with either the adenovirus 243- or the adenovirus 289-amino acid E1A protein.
|
Proc Natl Acad Sci U S A
|
1991
|
0.98
|
134
|
Topoisomerase I and II cleavage of adenovirus DNA in vivo: both topoisomerase activities appear to be required for adenovirus DNA replication.
|
J Virol
|
1990
|
0.96
|
135
|
Mammary tumors induced by human adenovirus type 9: a role for the viral early region 4 gene.
|
Breast Cancer Res Treat
|
1996
|
0.96
|
136
|
C-terminal domain of the adenovirus E1A oncogene product is required for induction of cytotoxic T lymphocytes and tumor-specific transplantation immunity.
|
Virology
|
1989
|
0.96
|
137
|
Adenovirus E4orf6 oncoprotein modulates the function of the p53-related protein, p73.
|
Proc Natl Acad Sci U S A
|
1998
|
0.93
|
138
|
Selection of sequence elements that substitute for the standard AATAAA motif which signals 3' processing and polyadenylation of late simian virus 40 mRNAs.
|
Nucleic Acids Res
|
1985
|
0.91
|
139
|
Transcriptional and translational control of adenovirus gene expression.
|
Microbiol Rev
|
1982
|
0.91
|
140
|
Molecular cloning of the cDNA and chromosome localization of the gene for human ubiquitin-conjugating enzyme 9.
|
J Biol Chem
|
1996
|
0.89
|
141
|
Adenovirus DNA replication facilitates binding of the MLTF/USF transcription factor to the viral major late promoter within infected cells.
|
Nucleic Acids Res
|
1992
|
0.88
|
142
|
Adenovirus type 5 and adenovirus type 12 recombinant viruses containing heterologous E1 genes are viable, transform rat cells, but are not tumorigenic in rats.
|
Virology
|
1988
|
0.85
|
143
|
The adenovirus tripartite leader sequence can alter nuclear and cytoplasmic metabolism of a non-adenovirus mRNA within infected cells.
|
Nucleic Acids Res
|
1988
|
0.81
|
144
|
Adenovirus terminal protein mediates efficient and timely activation of viral transcription.
|
Curr Top Microbiol Immunol
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