The initiation of protein synthesis plays an essential regulatory role in human biology. At the center of the initiation pathway, the 13-subunit eukaryotic translation initiation factor 3 (eIF3) controls access of other initiation factors and mRNA to the ribosome by unknown mechanisms. Using electron microscopy (EM), bioinformatics and biochemical experiments, we identify two highly conserved RNA-binding motifs in eIF3 that direct translation initiation from the hepatitis C virus internal ribosome entry site (HCV IRES) RNA. Mutations in the RNA-binding motif of subunit eIF3a weaken eIF3 binding to the HCV IRES and the 40S ribosomal subunit, thereby suppressing eIF2-dependent recognition of the start codon. Mutations in the eIF3c RNA-binding...
Many viruses and certain cellular mRNAs initiate protein synthesis from a highly structured RNA sequ...
Translation in eukaryotes is highly regulated during initiation, a process impacted by numerous read...
AbstractThe HCV internal ribosome entry site (IRES) directly regulates the assembly of translation i...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The regulation of protein synthesis is critical in viral infection, cell death, and development. Mos...
Protein synthesis in all cells begins with recruitment of the small ribosomal subunit to the initiat...
Protein synthesis in mammalian cells requires initiation factor eIF3, a È750-kilodalton complex that...
International audienceViruses depend on the host cell translation machinery for their replication, a...
International audienceViruses depend on the host cell translation machinery for their replication, a...
Protein fate in higher eukaryotes is controlled by three complexes that share conserved architectura...
AbstractMany viral mRNAs contain a 5′-UTR RNA element called internal ribosome-entry site (IRES), wh...
The translation of the HCV viral proteins represents a key step in the life-cycle of this virus. In ...
The translation of the HCV viral proteins represents a key step in the life-cycle of this virus. In ...
Many viruses and certain cellular mRNAs initiate protein synthesis from a highly structured RNA sequ...
Translation in eukaryotes is highly regulated during initiation, a process impacted by numerous read...
AbstractThe HCV internal ribosome entry site (IRES) directly regulates the assembly of translation i...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The initiation of protein synthesis plays an essential regulatory role in human biology. At the cent...
The regulation of protein synthesis is critical in viral infection, cell death, and development. Mos...
Protein synthesis in all cells begins with recruitment of the small ribosomal subunit to the initiat...
Protein synthesis in mammalian cells requires initiation factor eIF3, a È750-kilodalton complex that...
International audienceViruses depend on the host cell translation machinery for their replication, a...
International audienceViruses depend on the host cell translation machinery for their replication, a...
Protein fate in higher eukaryotes is controlled by three complexes that share conserved architectura...
AbstractMany viral mRNAs contain a 5′-UTR RNA element called internal ribosome-entry site (IRES), wh...
The translation of the HCV viral proteins represents a key step in the life-cycle of this virus. In ...
The translation of the HCV viral proteins represents a key step in the life-cycle of this virus. In ...
Many viruses and certain cellular mRNAs initiate protein synthesis from a highly structured RNA sequ...
Translation in eukaryotes is highly regulated during initiation, a process impacted by numerous read...
AbstractThe HCV internal ribosome entry site (IRES) directly regulates the assembly of translation i...