4.7 Article

eIF2B promotes eIF5 dissociation from eIF2•GDP to facilitate guanine nucleotide exchange for translation initiation

期刊

GENES & DEVELOPMENT
卷 27, 期 24, 页码 2696-2707

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.231514.113

关键词

protein synthesis initiation; G-protein regulators; GEF; GDF; GDI

资金

  1. Biotechnology and Biological Science Research Council, United Kingdom [BB/H010599/1, BB/L000652/1]
  2. Wellcome Trust Institutional Strategic Support Fund (ISSF) award [097820]
  3. Biotechnology and Biological Sciences Research Council [BB/H010599/1, BB/L000652/1] Funding Source: researchfish
  4. BBSRC [BB/H010599/1, BB/L000652/1] Funding Source: UKRI

向作者/读者索取更多资源

Protein synthesis factor eIF2 delivers initiator tRNA to the ribosome. Two proteins regulate its G-protein cycle: eIF5 has both GTPase-accelerating protein (GAP) and GDP dissociation inhibitor (GDI) functions, and eIF2B is the guanine nucleotide exchange factor (GEF). In this study, we used protein-protein interaction and nucleotide exchange assays to monitor the kinetics of eIF2 release from the eIF2 center dot GDP/eIF5 GDI complex and determine the effect of eIF2B on this release. We demonstrate that eIF2B has a second activity as a GDI displacement factor (GDF) that can recruit eIF2 from the eIF2 center dot GDP/eIF5 GDI complex prior to GEF action. We found that GDF function is dependent on the eIF2B epsilon and eIF2B gamma subunits and identified a novel eIF2-eIF2B gamma interaction. Furthermore, GDF and GEF activities are shown to be independent. First, eIF2B GDF is insensitive to eIF2 alpha phosphorylation, unlike GEF. Second, we found that eIF2B gamma mutations known to disrupt GCN4 translational control significantly impair GDF activity but not GEF function. Our data therefore define an additional step in the protein synthesis initiation pathway that is important for its proper control. We propose a new model to place eIF2B GDF function in the context of efficient eIF2 recycling and its regulation by eIF2 phosphorylation.

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