[1]
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NUCLEOTIDE SEQUENCE [MRNA] (ISOFORM 1), FUNCTION, AND INTERACTION WITH EIF4A; EIF4E AND EIF3.
PubMed=9418880 [NCBI, ExPASy, EBI, Israel, Japan]
Gradi A.,
Imataka H.,
Svitkin Y.V.,
Rom E.,
Raught B.,
Morino S.,
Sonenberg N.;
"A novel functional human eukaryotic translation initiation factor 4G.";
Mol. Cell. Biol. 18:334-342(1998).
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[2]
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NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
DOI=10.1038/nature04727; PubMed=16710414 [NCBI, ExPASy, EBI, Israel, Japan]
Gregory S.G.,
Barlow K.F.,
McLay K.E.,
Kaul R.,
Swarbreck D.,
Dunham A.,
Scott C.E.,
Howe K.L.,
Woodfine K.,
Spencer C.C.A.,
Jones M.C.,
Gillson C.,
Searle S.,
Zhou Y.,
Kokocinski F.,
McDonald L.,
Evans R.,
Phillips K.,
Atkinson A.,
Cooper R.,
Jones C.,
Hall R.E.,
Andrews T.D.,
Lloyd C.,
Ainscough R.,
Almeida J.P.,
Ambrose K.D.,
Anderson F.,
Andrew R.W.,
Ashwell R.I.S.,
Aubin K.,
Babbage A.K.,
Bagguley C.L.,
Bailey J.,
Beasley H.,
Bethel G.,
Bird C.P.,
Bray-Allen S.,
Brown J.Y.,
Brown A.J.,
Buckley D.,
Burton J.,
Bye J.,
Carder C.,
Chapman J.C.,
Clark S.Y.,
Clarke G.,
Clee C.,
Cobley V.,
Collier R.E.,
Corby N.,
Coville G.J.,
Davies J.,
Deadman R.,
Dunn M.,
Earthrowl M.,
Ellington A.G.,
Errington H.,
Frankish A.,
Frankland J.,
French L.,
Garner P.,
Garnett J.,
Gay L.,
Ghori M.R.J.,
Gibson R.,
Gilby L.M.,
Gillett W.,
Glithero R.J.,
Grafham D.V.,
Griffiths C.,
Griffiths-Jones S.,
Grocock R.,
Hammond S.,
Harrison E.S.I.,
Hart E.,
Haugen E.,
Heath P.D.,
Holmes S.,
Holt K.,
Howden P.J.,
Hunt A.R.,
Hunt S.E.,
Hunter G.,
Isherwood J.,
James R.,
Johnson C.,
Johnson D.,
Joy A.,
Kay M.,
Kershaw J.K.,
Kibukawa M.,
Kimberley A.M.,
King A.,
Knights A.J.,
Lad H.,
Laird G.,
Lawlor S.,
Leongamornlert D.A.,
Lloyd D.M.,
Loveland J.,
Lovell J.,
Lush M.J.,
Lyne R.,
Martin S.,
Mashreghi-Mohammadi M.,
Matthews L.,
Matthews N.S.W.,
McLaren S.,
Milne S.,
Mistry S.,
Moore M.J.F.,
Nickerson T.,
O'Dell C.N.,
Oliver K.,
Palmeiri A.,
Palmer S.A.,
Parker A.,
Patel D.,
Pearce A.V.,
Peck A.I.,
Pelan S.,
Phelps K.,
Phillimore B.J.,
Plumb R.,
Rajan J.,
Raymond C.,
Rouse G.,
Saenphimmachak C.,
Sehra H.K.,
Sheridan E.,
Shownkeen R.,
Sims S.,
Skuce C.D.,
Smith M.,
Steward C.,
Subramanian S.,
Sycamore N.,
Tracey A.,
Tromans A.,
Van Helmond Z.,
Wall M.,
Wallis J.M.,
White S.,
Whitehead S.L.,
Wilkinson J.E.,
Willey D.L.,
Williams H.,
Wilming L.,
Wray P.W.,
Wu Z.,
Coulson A.,
Vaudin M.,
Sulston J.E.,
Durbin R.M.,
Hubbard T.,
Wooster R.,
Dunham I.,
Carter N.P.,
McVean G.,
Ross M.T.,
Harrow J.,
Olson M.V.,
Beck S.,
Rogers J.,
Bentley D.R.;
"The DNA sequence and biological annotation of human chromosome 1.";
Nature 441:315-321(2006).
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[3]
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NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
Mural R.J.,
Istrail S.,
Sutton G.G.,
Florea L.,
Halpern A.L.,
Mobarry C.M.,
Lippert R.,
Walenz B.,
Shatkay H.,
Dew I.,
Miller J.R.,
Flanigan M.J.,
Edwards N.J.,
Bolanos R.,
Fasulo D.,
Halldorsson B.V.,
Hannenhalli S.,
Turner R.,
Yooseph S.,
Lu F.,
Nusskern D.R.,
Shue B.C.,
Zheng X.H.,
Zhong F.,
Delcher A.L.,
Huson D.H.,
Kravitz S.A.,
Mouchard L.,
Reinert K.,
Remington K.A.,
Clark A.G.,
Waterman M.S.,
Eichler E.E.,
Adams M.D.,
Hunkapiller M.W.,
Myers E.W.,
Venter J.C.;
Submitted (JUL-2005) to the EMBL/GenBank/DDBJ databases.
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[4]
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NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA] (ISOFORM 2).
TISSUE=Testis;
DOI=10.1101/gr.2596504; PubMed=15489334 [NCBI, ExPASy, EBI, Israel, Japan] The MGC Project Team;
"The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).";
Genome Res. 14:2121-2127(2004).
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[5]
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NUCLEOTIDE SEQUENCE [MRNA] OF 887-1585 (ISOFORM 1).
TISSUE=Ovary;
Klaudiny J.J.,
von der Kammer H.H.,
Scheit K.K.;
"Characterization of secretory proteins of human ovarian follicle cells by cDNA cloning.";
Submitted (JUN-1994) to the EMBL/GenBank/DDBJ databases.
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[6]
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INTERACTION WITH PABPC1.
DOI=10.1093/emboj/17.24.7480; PubMed=9857202 [NCBI, ExPASy, EBI, Israel, Japan]
Imataka H.,
Gradi A.,
Sonenberg N.;
"A newly identified N-terminal amino acid sequence of human eIF4G binds poly(A)-binding protein and functions in poly(A)-dependent translation.";
EMBO J. 17:7480-7489(1998).
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[7]
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PHOSPHORYLATION AT SER-1156 BY CAMK1.
DOI=10.1074/jbc.M308781200; PubMed=14507913 [NCBI, ExPASy, EBI, Israel, Japan]
Qin H.,
Raught B.,
Sonenberg N.,
Goldstein E.G.,
Edelman A.M.;
"Phosphorylation screening identifies translational initiation factor 4GII as an intracellular target of Ca(2+)/calmodulin-dependent protein kinase I.";
J. Biol. Chem. 278:48570-48579(2003).
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[8]
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CLEAVAGE BY RHINOVIRUS PROTEASE.
DOI=10.1128/JVI.77.8.5026-5029.2003; PubMed=12663812 [NCBI, ExPASy, EBI, Israel, Japan]
Gradi A.,
Svitkin Y.V.,
Sommergruber W.,
Imataka H.,
Morino S.,
Skern T.,
Sonenberg N.;
"Human rhin4ovirus 2A proteinase cleavage sites in eukaryotic initiation factors (eIF) 4GI and eIF4GII are different.";
J. Virol. 77:5026-5029(2003).
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[9]
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CLEAVAGE BY FOOT-AND-MOUTH DISEASE VIRUS PROTEASE.
DOI=10.1128/JVI.78.7.3271-3278.2004; PubMed=15016848 [NCBI, ExPASy, EBI, Israel, Japan]
Gradi A.,
Foeger N.,
Strong R.,
Svitkin Y.V.,
Sonenberg N.,
Skern T.,
Belsham G.J.;
"Cleavage of eukaryotic translation initiation factor 4GII within foot-and-mouth disease virus-infected cells: identification of the L-protease cleavage site in vitro.";
J. Virol. 78:3271-3278(2004).
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[10]
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REVIEW.
DOI=10.1146/annurev.biochem.68.1.913; PubMed=10872469 [NCBI, ExPASy, EBI, Israel, Japan]
Gingras A.-C.,
Raught B.,
Sonenberg N.;
"eIF4 initiation factors: effectors of mRNA recruitment to ribosomes and regulators of translation.";
Annu. Rev. Biochem. 68:913-963(1999).
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[11]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-230; SER-232 AND SER-495, AND MASS SPECTROMETRY.
TISSUE=Epithelium;
DOI=10.1016/j.cell.2006.09.026; PubMed=17081983 [NCBI, ExPASy, EBI, Israel, Japan]
Olsen J.V.,
Blagoev B.,
Gnad F.,
Macek B.,
Kumar C.,
Mortensen P.,
Mann M.;
"Global, in vivo, and site-specific phosphorylation dynamics in signaling networks.";
Cell 127:635-648(2006).
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[12]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-495, AND MASS SPECTROMETRY.
TISSUE=Epithelium;
DOI=10.1038/nbt1240; PubMed=16964243 [NCBI, ExPASy, EBI, Israel, Japan]
Beausoleil S.A.,
Villen J.,
Gerber S.A.,
Rush J.,
Gygi S.P.;
"A probability-based approach for high-throughput protein phosphorylation analysis and site localization.";
Nat. Biotechnol. 24:1285-1292(2006).
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[13]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-495, AND MASS SPECTROMETRY.
DOI=10.1074/mcp.M700120-MCP200; PubMed=17693683 [NCBI, ExPASy, EBI, Israel, Japan]
Tang L.-Y.,
Deng N.,
Wang L.-S.,
Dai J.,
Wang Z.-L.,
Jiang X.-S.,
Li S.-J.,
Li L.,
Sheng Q.-H.,
Wu D.-Q.,
Li L.,
Zeng R.;
"Quantitative phosphoproteome profiling of Wnt3a-mediated signaling network: indicating the involvement of ribonucleoside-diphosphate reductase M2 subunit phosphorylation at residue serine 20 in canonical Wnt signal transduction.";
Mol. Cell. Proteomics 6:1952-1967(2007).
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[14]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-495, AND MASS SPECTROMETRY.
DOI=10.2116/analsci.24.161; PubMed=18187866 [NCBI, ExPASy, EBI, Israel, Japan]
Imami K.,
Sugiyama N.,
Kyono Y.,
Tomita M.,
Ishihama Y.;
"Automated phosphoproteome analysis for cultured cancer cells by two-dimensional nanoLC-MS using a calcined titania/C18 biphasic column.";
Anal. Sci. 24:161-166(2008).
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[15]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-232 AND SER-495, AND MASS SPECTROMETRY.
TISSUE=Platelet;
DOI=10.1021/pr0704130; PubMed=18088087 [NCBI, ExPASy, EBI, Israel, Japan]
Zahedi R.P.,
Lewandrowski U.,
Wiesner J.,
Wortelkamp S.,
Moebius J.,
Schuetz C.,
Walter U.,
Gambaryan S.,
Sickmann A.;
"Phosphoproteome of resting human platelets.";
J. Proteome Res. 7:526-534(2008).
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[16]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-495, AND MASS SPECTROMETRY.
DOI=10.1073/pnas.0805139105; PubMed=18669648 [NCBI, ExPASy, EBI, Israel, Japan]
Dephoure N.,
Zhou C.,
Villen J.,
Beausoleil S.A.,
Bakalarski C.E.,
Elledge S.J.,
Gygi S.P.;
"A quantitative atlas of mitotic phosphorylation.";
Proc. Natl. Acad. Sci. U.S.A. 105:10762-10767(2008).
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[17]
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IDENTIFICATION [LARGE SCALE ANALYSIS], AND MASS SPECTROMETRY.
Colinge J.,
Superti-Furga G.,
Bennett K.L.;
Submitted (OCT-2008) to UniProtKB.
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[18]
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STRUCTURE BY NMR OF 621-637 IN COMPLEX WITH EIF4E.
DOI=10.1023/A:1025442322316; PubMed=12975586 [NCBI, ExPASy, EBI, Israel, Japan]
Miura T.,
Shiratori Y.,
Shimma N.;
"Backbone resonance assignment of human eukaryotic translation initiation factor 4E (eIF4E) in complex with 7-methylguanosine diphosphate (m7GDP) and a 17-amino acid peptide derived from human eIF4GII.";
J. Biomol. NMR 27:279-280(2003).
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[19]
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X-RAY CRYSTALLOGRAPHY (2.37 ANGSTROMS) OF 745-986, AND MUTAGENESIS OF ARG-756; ARG-759; LYS-764; ARG-814; LYS-820 AND 834-ARG-LYS-835.
DOI=10.1016/S1097-2765(01)00167-8; PubMed=11172724 [NCBI, ExPASy, EBI, Israel, Japan]
Marcotrigiano J.,
Lomakin I.B.,
Sonenberg N.,
Pestova T.V.,
Hellen C.U.T.,
Burley S.K.;
"A conserved HEAT domain within eIF4G directs assembly of the translation initiation machinery.";
Mol. Cell 7:193-203(2001).
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