N- and C-terminal residues of eIF1A have opposing effects on the fidelity of start codon selection

被引:101
作者
Fekete, Christie A.
Mitchell, Sarah F.
Cherkasova, Vera A.
Applefield, Drew
Algire, Mikkel A.
Maag, David
Saini, Adesh K.
Lorsch, Jon R.
Hinnebusch, Alan G.
机构
[1] Johns Hopkins Univ, Dept Biophys & Biophys Chem, Sch Med, Baltimore, MD 21205 USA
[2] Natl Inst Child Hlth & Human Dev, Lab Gene Regulat & Dev, NIH, Bethesda, MD USA
关键词
eIF1A; GCN4; initiation; Saccharomyces; translation;
D O I
10.1038/sj.emboj.7601613
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Translation initiation factor eIF1A stimulates preinitiation complex (PIC) assembly and scanning, but the molecular mechanisms of its functions are not understood. We show that the F131A, F133A mutation in the C-terminal tail (CTT) of eIF1A impairs recruitment of the eIF2-GTP-Met-tRNA(i)(Met) Met ternary complex to 40S subunits, eliminating functional coupling with eIF1. Mutating residues 17 - 21 in the N-terminal tail (NTT) of eIF1A also reduces PIC assembly, but in a manner rescued by eIF1. Interestingly, the 131,133 CTT mutation enhances initiation at UUG codons (Sui(-) phenotype) and decreases leaky scanning at AUG, while the NTT mutation 17 - 21 suppresses the Sui(-) phenotypes of eIF5 and eIF2 beta mutations and increases leaky scanning. These findings and the opposite effects of the mutations on eIF1A binding to reconstituted PICs suggest that the NTT mutations promote an open, scanning-conducive conformation of the PIC, whereas the CTT mutations 131,133 have the reverse effect. We conclude that tight binding of eIF1A to the PIC is an important determinant of AUG selection and is modulated in opposite directions by residues in the NTT and CTT of eIF1A.
引用
收藏
页码:1602 / 1614
页数:13
相关论文
共 27 条
[1]
Pi release from elF2, not GTP hydrolysis, is the step controlled by start-site selection during eukaryotic translation initiation [J].
Algire, MA ;
Maag, D ;
Lorsch, JR .
MOLECULAR CELL, 2005, 20 (02) :251-262
[2]
Development and characterization of a reconstituted yeast translation initiation system [J].
Algire, MA ;
Maag, D ;
Savio, P ;
Acker, MG ;
Tarun, SZ ;
Sachs, AB ;
Asano, K ;
Nielsen, KH ;
Olsen, DS ;
Phan, L ;
Hinnebusch, AG ;
Lorsch, JR .
RNA, 2002, 8 (03) :382-397
[3]
[Anonymous], ENCY FOOD MICROBIOLO
[4]
A multifactor complex of eIFI, cIF2, eIF3, eIF5, and tRNAiMet promotes initiation complex assembly and couples GTP hydrolysis to AUG recognition [J].
Asano, K ;
Phan, L ;
Valásek, L ;
Schoenfeld, LW ;
Shalev, A ;
Clayton, J ;
Nielsen, K ;
Donahue, TF ;
Hinnebusch, AG .
COLD SPRING HARBOR SYMPOSIA ON QUANTITATIVE BIOLOGY, 2001, 66 :403-415
[5]
Multiple roles for the C-terminal domain of eIF5 in translation initiation complex assembly and GTPase activation [J].
Asano, K ;
Shalev, A ;
Phan, L ;
Nielsen, K ;
Clayton, J ;
Valásek, L ;
Donahue, TF ;
Hinnebusch, AG .
EMBO JOURNAL, 2001, 20 (09) :2326-2337
[6]
Donahue TF, 2000, COLD SPRING HARBOR M, V39, P487
[7]
The eIF1A C-terminal domain promotes initiation complex assembly, scanning and AUG selection in vivo [J].
Fekete, CA ;
Applefield, DJ ;
Blakely, SA ;
Shirokikh, N ;
Pestova, T ;
Lorsch, JR ;
Hinnebusch, AG .
EMBO JOURNAL, 2005, 24 (20) :3588-3601
[8]
Hershey JWB, 2000, COLD SPRING HARBOR M, V39, P33
[9]
Translational regulation of GCN4 and the general amino acid control of yeast [J].
Hinnebusch, AG .
ANNUAL REVIEW OF MICROBIOLOGY, 2005, 59 :407-450
[10]
Hinnebusch AG, 2000, COLD SPRING HARBOR M, V39, P185