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Functional and biochemical characterization of elF3 and elF3j in Saccharomyces cerevisiae and human cell lines
Wagner, Susan ; Valášek, Leoš (advisor) ; Krásný, Libor (referee) ; Staněk, David (referee)
3 Abstract 3.1 english Translation is divided into initiation, elongation, termination and ribosome recycling. One of the largest eukaryotic initiation factors (eIF), eIF3, plays a role in nearly all steps of initiation and was recently also implicated in ribosomal recycling. Here we uncovered novel roles for eIF3 in translation termination in yeast, where the five core eIF3 subunits and their loosely associated eIF3j/HCR1 accessory factor control stop codon read-through in the opposite manner. In addition, we further characterized the function of eIF3j in initiation. Structural analysis revealed that the conserved tryptophan residue in the human eIF3j N-terminal acidic motif (NTA) is held in the hydrophobic pocket of the human eIF3b RNA recognition motif (RRM). This binding mode was shown to be conserved in yeast ensuring efficient 40S-binding by eIF3 and stringency of AUG recognition, where j/HCR1 seems to co-operate with eIF1A. We found that the N-terminal half of j/HCR1 in yeast is sufficient for fulfilling all functions of the full-length protein necessary for wild-type growth. Despite the logical dispensability of the j/HCR1 C- terminal half, it was shown that it bears a specific KERR motif that is evolutionary conserved and contained also within the HCR1-like domain of a/TIF32, through which it...

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4 Wagner, Štěpán
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