Quantitative Proteomics Identifies Gemin5, A Scaffolding Protein Involved in Ribonucleoprotein Assembly, as a Novel Partner for Eukaryotic Initiation Factor 4E
- 27 April 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Proteome Research
- Vol. 5 (6) , 1367-1378
- https://doi.org/10.1021/pr0504539
Abstract
Protein complexes are dynamic entities; identification and quantitation of their components is critical in elucidating functional roles under specific cellular conditions. We report the first quantitative proteomic analysis of the human cap-binding protein complex. Components and proteins associated with the translation initiation eIF4F complex that may affect complex formation were identified and quantitated under distinct growth conditions. Site-specific phosphorylation of eIF4E and eIF4G and elevated levels of eIF4G:eIF4E complexes in phorbol ester treated HEK293 cells, and in serum-starved tumorigenic human mesenchymal stromal cells, attested to their activated translational states. The WD-repeat, scaffolding-protein Gemin5 was identified as a novel eIF4E binding partner, which interacted directly with eIF4E through a motif (YXXXXLΦ) present in a number of eIF4E-interacting partners. Elevated levels of Gemin5:eIF4E complexes were found in phorbol ester treated HEK293 cells. Gemin5 and eIF4E co-localized to cytoplasmic P-bodies in human osteosarcoma U2OS cells. Interaction between eIF4E and Gemin5 and their co-localization to the P-bodies, may serve to recruit capped mRNAs to these RNP complexes, for functions related to RNP assembly, remodeling and/or transition from active translation to mRNA degradation. Our results demonstrate that our quantitative proteomic strategy can be applied to the identification and quantitation of protein complex components in human cells grown under different conditions. Keywords: quantitative mass spectrometry • isotope labeling • translation initiation complex • eIF4E interaction • eIF4E phosphorylation • eIF4G phosphorylation • Gemin5 interaction • processing bodiesKeywords
This publication has 43 references indexed in Scilit:
- VEMS 3.0: Algorithms and Computational Tools for Tandem Mass Spectrometry Based Identification of Post-translational Modifications in ProteinsJournal of Proteome Research, 2005
- Inhibition of Translational Initiation by Let-7 MicroRNA in Human CellsScience, 2005
- Stress granules and processing bodies are dynamically linked sites of mRNP remodelingThe Journal of cell biology, 2005
- eIF4E promotes nuclear export of cyclin D1 mRNAs via an element in the 3′UTRThe Journal of cell biology, 2005
- The eukaryotic initiation factor 4E-binding proteins and apoptosisCell Death & Differentiation, 2005
- Database‐independent, database‐dependent, and extended interpretation of peptide mass spectra in VEMS V2.0Proteomics, 2004
- The SMN complexExperimental Cell Research, 2004
- Oncogenic Ras and Akt Signaling Contribute to Glioblastoma Formation by Differential Recruitment of Existing mRNAs to PolysomesMolecular Cell, 2003
- The Mitogen-Activated Protein Kinase Signal-Integrating Kinase Mnk2 Is a Eukaryotic Initiation Factor 4E Kinase with High Levels of Basal Activity in Mammalian CellsMolecular and Cellular Biology, 2001
- Distinct Signalling Pathways Mediate Insulin and Phorbol Ester-stimulated Eukaryotic Initiation Factor 4F Assembly and Protein Synthesis in HEK 293 CellsJournal of Biological Chemistry, 2000