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Citation: J. Marcotrigiano et al., A conserved HEAT domain within elF4G directs assembly of the translation initiation machinery, MOL CELL, 7(1), 2001, pp. 193-203
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Citation: R. Schneider et al., New ways of initiating translation in eukaryotes?, MOL CELL B, 21(23), 2001, pp. 8238-8241
Citation: Tv. Pestova et Cut. Hellen, The structure and function of initiation factors in eukaryotic protein synthesis, CELL MOL L, 57(4), 2000, pp. 651-674
Authors:
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Pestova, TV
Hellen, CUT
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Citation: Jl. Battiste et al., The eIF1A solution structure reveals a large RNA-binding surface importantfor scanning function, MOL CELL, 5(1), 2000, pp. 109-119
Authors:
Pilipenko, EV
Pestova, TV
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Agol, VI
Hellen, CUT
Citation: Ev. Pilipenko et al., A cell cycle-dependent protein serves as a template-specific translation initiation factor, GENE DEV, 14(16), 2000, pp. 2028-2045
Authors:
Morino, S
Imataka, H
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Pestova, TV
Sonenberg, N
Citation: S. Morino et al., Eukaryotic translation initiation factor 4E (eIF4E) binding site and the middle one-third of eIF4GI constitute the core domain for cap-dependent translation, and the C-terminal one-third functions as a modulatory region, MOL CELL B, 20(2), 2000, pp. 468-477
Citation: Ib. Lomakin et al., Physical association of eukaryotic initiation factor 4G (eIF4G) with eIF4Astrongly enhances binding of elF4G to the internal ribosomal entry site ofencephalomyocarditis virus and is required for internal initiation of translation, MOL CELL B, 20(16), 2000, pp. 6019-6029
Citation: Vg. Kolupaeva et al., An enzymatic footprinting analysis of the interaction of 40S ribosomal subunits with the internal ribosomal entry site of hepatitis C virus, J VIROLOGY, 74(14), 2000, pp. 6242-6250