Intact eukaryotic initiation factor 4G is required for hepatitis A virus internal initiation of translation.

PubWeight™: 1.46‹?› | Rank: Top 5%

🔗 View Article (PMID 9344915)

Published in Virology on October 13, 1997

Authors

A M Borman1, K M Kean

Author Affiliations

1: CNRS URA 1966, Institut Pasteur, Paris, France.

Articles citing this

Picornavirus IRESes and the poly(A) tail jointly promote cap-independent translation in a mammalian cell-free system. RNA (2000) 2.53

Eukaryotic initiation factor 4GII (eIF4GII), but not eIF4GI, cleavage correlates with inhibition of host cell protein synthesis after human rhinovirus infection. J Virol (1999) 1.72

Bridging IRES elements in mRNAs to the eukaryotic translation apparatus. Biochim Biophys Acta (2009) 1.62

Effects of picornavirus 3A Proteins on Protein Transport and GBF1-dependent COP-I recruitment. J Virol (2006) 1.50

Activity of the hepatitis A virus IRES requires association between the cap-binding translation initiation factor (eIF4E) and eIF4G. J Virol (2001) 1.50

Functional and structural similarities between the internal ribosome entry sites of hepatitis C virus and porcine teschovirus, a picornavirus. J Virol (2004) 1.37

Eukaryotic translation initiation factor 4GI and p97 promote cellular internal ribosome entry sequence-driven translation. Proc Natl Acad Sci U S A (2005) 1.36

Genome variability and capsid structural constraints of hepatitis a virus. J Virol (2003) 1.33

Eukaryotic initiation factor 4G-poly(A) binding protein interaction is required for poly(A) tail-mediated stimulation of picornavirus internal ribosome entry segment-driven translation but not for X-mediated stimulation of hepatitis C virus translation. Mol Cell Biol (2001) 1.29

Localization of a promoter in the putative internal ribosome entry site of the Saccharomyces cerevisiae TIF4631 gene. RNA (2004) 1.20

Cap-independent translation conferred by the 5' leader of tobacco etch virus is eukaryotic initiation factor 4G dependent. J Virol (2001) 1.19

Internal initiation drives the synthesis of Ure2 protein lacking the prion domain and affects [URE3] propagation in yeast cells. EMBO J (2003) 1.18

Structural features of the Seneca Valley virus internal ribosome entry site (IRES) element: a picornavirus with a pestivirus-like IRES. J Virol (2011) 1.05

Conserved nucleotides within the J domain of the encephalomyocarditis virus internal ribosome entry site are required for activity and for interaction with eIF4G. J Virol (2003) 1.03

Detailed analysis of the requirements of hepatitis A virus internal ribosome entry segment for the eukaryotic initiation factor complex eIF4F. J Virol (2001) 1.01

Functional analyses of RNA structures shared between the internal ribosome entry sites of hepatitis C virus and the picornavirus porcine teschovirus 1 Talfan. J Virol (2006) 1.01

The picornavirus avian encephalomyelitis virus possesses a hepatitis C virus-like internal ribosome entry site element. J Virol (2007) 1.00

Unique characteristics of a picornavirus internal ribosome entry site from the porcine teschovirus-1 talfan. J Virol (2002) 0.99

Replication of subgenomic hepatitis A virus RNAs expressing firefly luciferase is enhanced by mutations associated with adaptation of virus to growth in cultured cells. J Virol (2002) 0.98

Poly(A) binding protein, C-terminally truncated by the hepatitis A virus proteinase 3C, inhibits viral translation. Nucleic Acids Res (2007) 0.92

Monocistronic mRNAs containing defective hepatitis C virus-like picornavirus internal ribosome entry site elements in their 5' untranslated regions are efficiently translated in cells by a cap-dependent mechanism. RNA (2008) 0.91

Translational control of the interferon regulatory factor 2 mRNA by IRES element. Nucleic Acids Res (2007) 0.90

Comparison of the capacity of different viral internal ribosome entry segments to direct translation initiation in poly(A)-dependent reticulocyte lysates. Nucleic Acids Res (2003) 0.89

IRSS: a web-based tool for automatic layout and analysis of IRES secondary structure prediction and searching system in silico. BMC Bioinformatics (2009) 0.86

Duck Hepatitis A virus possesses a distinct type IV internal ribosome entry site element of picornavirus. J Virol (2011) 0.86

Translation without eIF2 promoted by poliovirus 2A protease. PLoS One (2011) 0.85

Translation directed by hepatitis A virus IRES in the absence of active eIF4F complex and eIF2. PLoS One (2012) 0.83

Nuclear proteins hijacked by mammalian cytoplasmic plus strand RNA viruses. Virology (2015) 0.81

Kinetic mechanism for the binding of eIF4F and tobacco Etch virus internal ribosome entry site rna: effects of eIF4B and poly(A)-binding protein. J Biol Chem (2009) 0.80

Direct-acting Antivirals and Host-targeting Agents against the Hepatitis A Virus. J Clin Transl Hepatol (2015) 0.77

Viral internal ribosome entry site structures segregate into two distinct morphologies. J Virol (2003) 0.77

Suppression of La antigen exerts potential antiviral effects against hepatitis A virus. PLoS One (2014) 0.76

Cellular cap-binding protein, eIF4E, promotes picornavirus genome restructuring and translation. Proc Natl Acad Sci U S A (2017) 0.75

Articles by these authors

Comparison of picornaviral IRES-driven internal initiation of translation in cultured cells of different origins. Nucleic Acids Res (1997) 2.26

Sequences within the poliovirus internal ribosome entry segment control viral RNA synthesis. EMBO J (1994) 2.13

Cap-Poly(A) synergy in mammalian cell-free extracts. Investigation of the requirements for poly(A)-mediated stimulation of translation initiation. J Biol Chem (2000) 2.12

Picornavirus internal ribosome entry segments: comparison of translation efficiency and the requirements for optimal internal initiation of translation in vitro. Nucleic Acids Res (1995) 1.86

elF4G and its proteolytic cleavage products: effect on initiation of protein synthesis from capped, uncapped, and IRES-containing mRNAs. RNA (1997) 1.75

Analysis of the functional significance of amino acid residues in the putative NTP-binding pattern of the poliovirus 2C protein. J Gen Virol (1992) 1.70

Foot-and-mouth disease virus Lb proteinase can stimulate rhinovirus and enterovirus IRES-driven translation and cleave several proteins of cellular and viral origin. J Virol (1995) 1.48

Biochemical characterisation of cap-poly(A) synergy in rabbit reticulocyte lysates: the eIF4G-PABP interaction increases the functional affinity of eIF4E for the capped mRNA 5'-end. Nucleic Acids Res (2000) 1.42

A highly defective HIV-1 group O provirus: evidence for the role of local sequence determinants in G-->A hypermutation during negative-strand viral DNA synthesis. Virology (1995) 1.38

A point mutation in the poliovirus polymerase gene determines a complementable temperature-sensitive defect of RNA replication. Virology (1989) 1.32

Eukaryotic initiation factor 4G-poly(A) binding protein interaction is required for poly(A) tail-mediated stimulation of picornavirus internal ribosome entry segment-driven translation but not for X-mediated stimulation of hepatitis C virus translation. Mol Cell Biol (2001) 1.29

Picornavirus 2A proteinase-mediated stimulation of internal initiation of translation is dependent on enzymatic activity and the cleavage products of cellular proteins. Virology (1995) 1.26

Natural isolates of ECHO virus type 25 with extensive variations in IRES sequences and different translational efficiencies. Virology (1996) 1.24

Highly infectious plasmids carrying poliovirus cDNA are capable of replication in transfected simian cells. J Virol (1986) 1.02

Detailed analysis of the requirements of hepatitis A virus internal ribosome entry segment for the eukaryotic initiation factor complex eIF4F. J Virol (2001) 1.01

Effects of P2 cleavage site mutations on poliovirus polyprotein processing. Virology (1996) 0.82

Intratypic recombination of polioviruses: evidence for multiple crossing-over sites on the viral genome. J Virol (1987) 0.81

Multiple mutations involved in the phenotype of a temperature-sensitive small-plaque mutant of poliovirus. Virology (1987) 0.80

Preliminary characterization of cis interactions between mutations of poliovirus genome. Res Virol (1989) 0.75