TY - JOUR
T1 - Efficient and accurate translation initiation directed by TISU involves RPS3 and RPS10e binding and differential eukaryotic initiation factor 1A regulation
AU - Haimov, Ora
AU - Sinvani, Hadar
AU - Martin, Franck
AU - Ulitsky, Igor
AU - Emmanuel, Rafi
AU - Tamarkin Ben Harush, Ben Harush, Ana
AU - Vardy, Assaf
AU - Dikstein, Rivka
N1 - Minerva Foundation [712278]; Israel Science Foundation [1168/13]; Agence Nationale pour la Recherche [ANR-11-SVSE802501]; Ambassade de France en Israel. This work was supported by grants from the Minerva Foundation (grant 712278) (R.D.), Israel Science Foundation (1168/13) (R.D.), and Agence Nationale pour la Recherche (ANR-11-SVSE802501) (F.M.), and Chateaubriand Fellowships from the Ambassade de France en Israël (H.S.). R.D. is the incumbent of the Ruth and Leonard Simon Chair of Cancer Research. R.D, O.H., and H.S. conceived and designed the study. H.S. and O.H carried out most of the experiments. Some of the site-specific UV cross-linking experiments were done in the F.M. lab under his guidance. I.U. performed the bioinformatic analysis of the CapSeq data. R.E. generated the A(+1) mutants in TISU. A.T.-B.-H.. generated the Cap-seq data. A.V. performed the split-RL experiments. R.D and O.H wrote the paper.
PY - 2017/8/1
Y1 - 2017/8/1
N2 - Canonical translation initiation involves ribosomal scanning, but short 5' untranslated region (5'UTR) mRNAs are translated in a scanning-independent manner. The extent and mechanism of scanning-independent translation are not fully understood. Here we report that short 5'UTR mRNAs constitute a substantial fraction of the translatome. Short 5'UTR mRNAs are enriched with TISU (translation initiator of short 5'UTR), a 12-nucleotide element directing efficient scanning-independent translation. Comprehensive mutagenesis revealed that each AUG codon-flanking nucleotide of TISU contributes to translational strength, but only a few are important for accuracy. Using site-specific UV cross-linking of ribosomal complexes assembled on TISU mRNA, we demonstrate specific binding of TISU to ribosomal proteins at the E and A sites. We identified RPS3 as the major TISU binding protein in the 48S complex A site. Upon 80S complex formation, RPS3 interaction is weakened and switched to RPS10e (formerly called RPS10). We further demonstrate that TISU is particularly dependent on eukaryotic initiation factor 1A (eIF1A) which interacts with both RPS3 and RPS10e. Our findings suggest that the cap-recruited ribosome specifically binds the TISU nucleotides at the A and E sites in cooperation with eIF1A to promote scanning arrest.
AB - Canonical translation initiation involves ribosomal scanning, but short 5' untranslated region (5'UTR) mRNAs are translated in a scanning-independent manner. The extent and mechanism of scanning-independent translation are not fully understood. Here we report that short 5'UTR mRNAs constitute a substantial fraction of the translatome. Short 5'UTR mRNAs are enriched with TISU (translation initiator of short 5'UTR), a 12-nucleotide element directing efficient scanning-independent translation. Comprehensive mutagenesis revealed that each AUG codon-flanking nucleotide of TISU contributes to translational strength, but only a few are important for accuracy. Using site-specific UV cross-linking of ribosomal complexes assembled on TISU mRNA, we demonstrate specific binding of TISU to ribosomal proteins at the E and A sites. We identified RPS3 as the major TISU binding protein in the 48S complex A site. Upon 80S complex formation, RPS3 interaction is weakened and switched to RPS10e (formerly called RPS10). We further demonstrate that TISU is particularly dependent on eukaryotic initiation factor 1A (eIF1A) which interacts with both RPS3 and RPS10e. Our findings suggest that the cap-recruited ribosome specifically binds the TISU nucleotides at the A and E sites in cooperation with eIF1A to promote scanning arrest.
UR - https://www.scopus.com/pages/publications/85023606925
U2 - 10.1128/MCB.00150-17
DO - 10.1128/MCB.00150-17
M3 - Article
SN - 0270-7306
VL - 37
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 15
M1 - e00150-17
ER -