): The goal of the proposed research is to characterize protein interactions that are important for eukaryotic translation initiation. The research will be focused around eIF4G, which is of central importance for the recruitment of the ribosome to mRNA. eIF4G interacts with a number of other proteins or protein complexes, such as eIF4E eIF3, eIF4A, Mnkl kinase and Poly(A)-binding protein, as well as with RNA. These interactions are important switches for regulation of protein expression, and the proteins involved are targets of signaling pathways and regulatory binding proteins. Furthermore, they are targets of cellular and viral proteases. The regulatory processes include phosphorylation of eIF4G and eIF4E or the cleavage of eIF4G during apoptosis and in picornavirus, infection. eIF4G is a multi-domain protein with subunits of yet unknown structure. It may only be partially folded, and its functional domains may undergo a folding process upon binding its target molecules. Considering the importance of this system, we propose research towards the following topics: 1. The structure of the ternary complex of yeast eIF4E m7Gpp and yeast eIF4GI393-490. 2. The structure of the ternary complex of human eIF4E m7Gpp and a minimal 4E-binding domain of a human eIF4G. 3. Analysis of the mutual interactions between e1F4E, cap analogues and eIF4G. 4. Regulation of the eIF4E/eIF4G interaction by 4EBP. 5. Domain organization of the entire eIF4G, can we correctly predict domain boundaries and express individual domains? Are these putative domains folded and suitable for structural studies? Can we characterize structures of other domains of eIF4G and study interactions with other proteins?

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
2R01CA068262-06
Application #
6288333
Study Section
Special Emphasis Panel (ZRG1-SSS-B (01))
Program Officer
Gallahan, Daniel L
Project Start
1996-05-08
Project End
2006-02-28
Budget Start
2001-03-01
Budget End
2002-02-28
Support Year
6
Fiscal Year
2001
Total Cost
$320,904
Indirect Cost
Name
Harvard University
Department
Biochemistry
Type
Schools of Medicine
DUNS #
082359691
City
Boston
State
MA
Country
United States
Zip Code
02115
Obayashi, Eiji; Luna, Rafael E; Nagata, Takashi et al. (2017) Molecular Landscape of the Ribosome Pre-initiation Complex during mRNA Scanning: Structural Role for eIF3c and Its Control by eIF5. Cell Rep 18:2651-2663
Salvi, Nicola; Papadopoulos, Evangelos; Blackledge, Martin et al. (2016) The Role of Dynamics and Allostery in the Inhibition of the eIF4E/eIF4G Translation Initiation Factor Complex. Angew Chem Int Ed Engl 55:7176-9
Edmonds, Katherine A; Wagner, Gerhard (2015) (1)H, (13)C, and (15)N backbone and sidechain chemical shift assignments for the HEAT2 domain of human eIF4GI. Biomol NMR Assign 9:157-60
Sekiyama, Naotaka; Arthanari, Haribabu; Papadopoulos, Evangelos et al. (2015) Molecular mechanism of the dual activity of 4EGI-1: Dissociating eIF4G from eIF4E but stabilizing the binding of unphosphorylated 4E-BP1. Proc Natl Acad Sci U S A 112:E4036-45
Yi, Tingfang; Arthanari, Haribabu; Akabayov, Barak et al. (2015) eIF1A augments Ago2-mediated Dicer-independent miRNA biogenesis and RNA interference. Nat Commun 6:7194
Leigh, Kendra E; Sharma, Mayuri; Mansueto, My Sam et al. (2015) Structure of a herpesvirus nuclear egress complex subunit reveals an interaction groove that is essential for viral replication. Proc Natl Acad Sci U S A 112:9010-5
Yi, Tingfang; Kabha, Eihab; Papadopoulos, Evangelos et al. (2014) 4EGI-1 targets breast cancer stem cells by selective inhibition of translation that persists in CSC maintenance, proliferation and metastasis. Oncotarget 5:6028-37
Mahalingam, Poornachandran; Takrouri, Khuloud; Chen, Ting et al. (2014) Synthesis of rigidified eIF4E/eIF4G inhibitor-1 (4EGI-1) mimetic and their in vitro characterization as inhibitors of protein-protein interaction. J Med Chem 57:5094-111
Yefidoff-Freedman, Revital; Chen, Ting; Sahoo, Rupam et al. (2014) 3-substituted indazoles as configurationally locked 4EGI-1 mimetics and inhibitors of the eIF4E/eIF4G interaction. Chembiochem 15:595-611
Luna, Rafael E; Akabayov, Sabine R; Ziarek, Joshua J et al. (2014) Examining weak protein-protein interactions in start codon recognition via NMR spectroscopy. FEBS J 281:1965-73

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