Identification of a Translation Initiation Factor 3 (eIF3) Core Complex, Conserved in Yeast and Mammals, That Interacts with eIF5

Author:

Phan Lon1,Zhang Xiaolong2,Asano Katsura1,Anderson James1,Vornlocher Hans-Peter3,Greenberg Jay R.4,Qin Jun2,Hinnebusch Alan G.1

Affiliation:

1. Laboratory of Eukaryotic Gene Regulation, National Institute of Child Health and Human Development, 1 and

2. Laboratory of Biophysical Chemistry, National Heart, Lung, and Blood Institute, 2 Bethesda, Maryland 20892;

3. Department of Biological Chemistry, University of California, Davis, California 95626 3 ; and

4. Department of Biology, University of Rochester, Rochester, New York 146274

Abstract

ABSTRACT Only five of the nine subunits of human eukaryotic translation initiation factor 3 (eIF3) have recognizable homologs encoded in the Saccharomyces cerevisiae genome, and only two of these (Prt1p and Tif34p) were identified previously as subunits of yeast eIF3. We purified a polyhistidine-tagged form of Prt1p (His-Prt1p) by Ni 2+ affinity and gel filtration chromatography and obtained a complex of ≈600 kDa composed of six polypeptides whose copurification was completely dependent on the polyhistidine tag on His-Prt1p. All five polypeptides associated with His-Prt1p were identified by mass spectrometry, and four were found to be the other putative homologs of human eIF3 subunits encoded in S. cerevisiae : YBR079c/Tif32p, Nip1p, Tif34p, and YDR429c/Tif35p. The fifth Prt1p-associated protein was eIF5, an initiation factor not previously known to interact with eIF3. The purified complex could rescue Met-tRNA i Met binding to 40S ribosomes in defective extracts from a prt1 mutant or extracts from which Nip1p had been depleted, indicating that it possesses a known biochemical activity of eIF3. These findings suggest that Tif32p, Nip1p, Prt1p, Tif34p, and Tif35p comprise an eIF3 core complex, conserved between yeast and mammals, that stably interacts with eIF5. Nip1p bound to eIF5 in yeast two-hybrid and in vitro protein binding assays. Interestingly, Sui1p also interacts with Nip1p, and both eIF5 and Sui1p have been implicated in accurate recognition of the AUG start codon. Thus, eIF5 and Sui1p may be recruited to the 40S ribosomes through physical interactions with the Nip1p subunit of eIF3.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference63 articles.

1. Anderson J. M. Pak L. Phan R. Cuesta K. Asano M. Tamame and A. G. Hinnebusch. A nuclear complex containing Gcd10p and Gcd14p controls translation by promoting maturation of initiator methionyl-tRNA. Submitted for publication.

2. Asano K. J. Anderson and A. G. Hinnebusch. Unpublished data.

3. Asano K. L. Phan J. Anderson and A. G. Hinnebusch. Complex formation by all five homologues of mammalian translation initiation factor 3 subunits from yeast Saccharomyces cerevisiae . J. Biol. Chem. in press.

4. Conservation and diversity of eukaryotic translation initiation factor eIF3;Asano K.;J. Biol. Chem.,1997

5. The translation initiation factor eIF3-p48 subunit is encoded by int-6, a site of frequent integration by the mouse mammary tumor virus genome;Asano K.;J. Biol. Chem.,1997

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