Sequential Eukaryotic Translation Initiation Factor 5 (eIF5) Binding to the Charged Disordered Segments of eIF4G and eIF2β Stabilizes the 48S Preinitiation Complex and Promotes Its Shift to the Initiation Mode
Author(s) -
Chingakham Ranjit Singh,
Ryosuke Watanabe,
Wasimul Q. Chowdhury,
Hiroyuki Hiraishi,
Marcelo J. Murai,
Yasufumi Yamamoto,
David H. Miles,
Yuka Ikeda,
Masayo Asano,
Katsura Asano
Publication year - 2012
Publication title -
molecular and cellular biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.14
H-Index - 327
eISSN - 1067-8824
pISSN - 0270-7306
DOI - 10.1128/mcb.00376-12
Subject(s) - eif4g , eif2 , biology , eukaryotic initiation factor , eukaryotic translation , eif4e , initiation factor , transcription preinitiation complex , microbiology and biotechnology , internal ribosome entry site , eukaryotic translation initiation factor 4 gamma , start codon , eif4a1 , messenger rna , translation (biology) , genetics , gene expression , gene , promoter
During translation initiation inSaccharomyces cerevisiae , an Arg- and Ser-rich segment (RS1 domain) of eukaryotic translation initiation factor 4G (eIF4G) and the Lys-rich segment (K-boxes) of eIF2β bind three common partners, eIF5, eIF1, and mRNA. Here, we report that both of these segments are involved in mRNA recruitment and AUG recognition by distinct mechanisms. First, the eIF4G-RS1 interaction with the eIF5 C-terminal domain (eIF5-CTD) directly links eIF4G to the preinitiation complex (PIC) and enhances mRNA binding. Second, eIF2β-K-boxes increase mRNA binding to the 40S subunitin vitro in a manner reversed by the eIF5-CTD. Third, mutations altering eIF4G-RS1, eIF2β-K-boxes, and eIF5-CTD restore the accuracy of start codon selection impaired by an eIF2β mutationin vivo , suggesting that the mutual interactions of the eIF segments within the PIC prime the ribosome for initiation in response to start codon selection. We propose that the rearrangement of interactions involving the eIF5-CTD promotes mRNA recruitment through mRNA binding by eIF4G and eIF2β and assists the start codon-induced release of eIF1, the major antagonist of establishing tRNAi Met :mRNA binding to the P site.
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