[1]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
DOI=10.1093/nar/11.20.7069; PubMed=6314274 [NCBI, ExPASy, EBI, Israel, Japan]
Sierra F.,
Stein G.,
Stein J.;
"Structure and in vitro transcription of a human H4 histone gene.";
Nucleic Acids Res. 11:7069-7086(1983).
|
[2]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
PubMed=3035717 [NCBI, ExPASy, EBI, Israel, Japan]
Pauli U.,
Chrysogelos S.,
Stein G.,
Stein J.,
Nick H.;
"Protein-DNA interactions in vivo upstream of a cell cycle-regulated human H4 histone gene.";
Science 236:1308-1311(1987).
|
[3]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
TISSUE=Placenta;
DOI=10.1016/0888-7543(91)90183-F; PubMed=1916825 [NCBI, ExPASy, EBI, Israel, Japan]
Albig W.,
Kardalinou E.,
Drabent B.,
Zimmer A.,
Doenecke D.;
"Isolation and characterization of two human H1 histone genes within clusters of core histone genes.";
Genomics 10:940-948(1991).
|
[4]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
PubMed=7626218 [NCBI, ExPASy, EBI, Israel, Japan]
Drabent B.,
Kardalinou E.,
Bode C.,
Doenecke D.;
"Association of histone H4 genes with the mammalian testis-specific H1t histone gene.";
DNA Cell Biol. 14:591-597(1995).
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[5]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
DOI=10.1016/S0378-1119(96)00582-3; PubMed=9031620 [NCBI, ExPASy, EBI, Israel, Japan]
Albig W.,
Meergans T.,
Doenecke D.;
"Characterization of the H1.5 gene completes the set of human H1 subtype genes.";
Gene 184:141-148(1997).
|
[6]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
DOI=10.1007/s004390050630; PubMed=9439656 [NCBI, ExPASy, EBI, Israel, Japan]
Albig W.,
Doenecke D.;
"The human histone gene cluster at the D6S105 locus.";
Hum. Genet. 101:284-294(1997).
|
[7]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
DOI=10.1006/geno.1996.4592; PubMed=9119399 [NCBI, ExPASy, EBI, Israel, Japan]
Albig W.,
Kioschis P.,
Poustka A.,
Meergans K.,
Doenecke D.;
"Human histone gene organization: nonregular arrangement within a large cluster.";
Genomics 40:314-322(1997).
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[8]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA] (HIST1H4A; HIST1H4B; HIST1H4C; HIST1H4D; HIST1H4E; HIST1H4F; HIST1H4H; HIST1H4I; HIST1H4J; HIST1H4K; HIST1H4L; HIST2H4A AND HIST4H4).
DOI=10.1016/S0888-7543(02)96850-3; PubMed=12408966 [NCBI, ExPASy, EBI, Israel, Japan]
Marzluff W.F.,
Gongidi P.,
Woods K.R.,
Jin J.,
Maltais L.J.;
"The human and mouse replication-dependent histone genes.";
Genomics 80:487-498(2002).
|
[9]
|
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
PubMed=8988030 [NCBI, ExPASy, EBI, Israel, Japan]
Akasaka T.,
Miura I.,
Takahashi N.,
Akasaka H.,
Yonetani N.,
Ohno H.,
Fukuhara S.,
Okuma M.;
"A recurring translocation, t(3;6)(q27;p21), in non-Hodgkin's lymphoma results in replacement of the 5' regulatory region of BCL6 with a novel H4 histone gene.";
Cancer Res. 57:7-12(1997).
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[10]
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NUCLEOTIDE SEQUENCE [GENOMIC DNA].
DOI=10.1016/j.gene.2004.07.036; PubMed=15527963 [NCBI, ExPASy, EBI, Israel, Japan]
Braastad C.D.,
Hovhannisyan H.,
van Wijnen A.J.,
Stein J.L.,
Stein G.S.;
"Functional characterization of a human histone gene cluster duplication.";
Gene 342:35-40(2004).
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[11]
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NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA] (HIST1H4F; HIST1H4H AND HIST2H4A).
Halleck A.,
Ebert L.,
Mkoundinya M.,
Schick M.,
Eisenstein S.,
Neubert P.,
Kstrang K.,
Schatten R.,
Shen B.,
Henze S.,
Mar W.,
Korn B.,
Zuo D.,
Hu Y.,
LaBaer J.;
"Cloning of human full open reading frames in Gateway(TM) system entry vector (pDONR201).";
Submitted (JUN-2004) to the EMBL/GenBank/DDBJ databases.
|
[12]
|
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA] (HIST1H4A; HIST1H4B; HIST1H4C; HIST1H4D; HIST1H4E; HIST1H4F; HIST1H4H; HIST1H4I; HIST1H4J; HIST1H4K AND HIST1H4L).
DOI=10.1038/nature02055; PubMed=14574404 [NCBI, ExPASy, EBI, Israel, Japan]
Mungall A.J.,
Palmer S.A.,
Sims S.K.,
Edwards C.A.,
Ashurst J.L.,
Wilming L.,
Jones M.C.,
Horton R.,
Hunt S.E.,
Scott C.E.,
Gilbert J.G.R.,
Clamp M.E.,
Bethel G.,
Milne S.,
Ainscough R.,
Almeida J.P.,
Ambrose K.D.,
Andrews T.D.,
Ashwell R.I.S.,
Babbage A.K.,
Bagguley C.L.,
Bailey J.,
Banerjee R.,
Barker D.J.,
Barlow K.F.,
Bates K.,
Beare D.M.,
Beasley H.,
Beasley O.,
Bird C.P.,
Blakey S.E.,
Bray-Allen S.,
Brook J.,
Brown A.J.,
Brown J.Y.,
Burford D.C.,
Burrill W.,
Burton J.,
Carder C.,
Carter N.P.,
Chapman J.C.,
Clark S.Y.,
Clark G.,
Clee C.M.,
Clegg S.,
Cobley V.,
Collier R.E.,
Collins J.E.,
Colman L.K.,
Corby N.R.,
Coville G.J.,
Culley K.M.,
Dhami P.,
Davies J.,
Dunn M.,
Earthrowl M.E.,
Ellington A.E.,
Evans K.A.,
Faulkner L.,
Francis M.D.,
Frankish A.,
Frankland J.,
French L.,
Garner P.,
Garnett J.,
Ghori M.J.,
Gilby L.M.,
Gillson C.J.,
Glithero R.J.,
Grafham D.V.,
Grant M.,
Gribble S.,
Griffiths C.,
Griffiths M.N.D.,
Hall R.,
Halls K.S.,
Hammond S.,
Harley J.L.,
Hart E.A.,
Heath P.D.,
Heathcott R.,
Holmes S.J.,
Howden P.J.,
Howe K.L.,
Howell G.R.,
Huckle E.,
Humphray S.J.,
Humphries M.D.,
Hunt A.R.,
Johnson C.M.,
Joy A.A.,
Kay M.,
Keenan S.J.,
Kimberley A.M.,
King A.,
Laird G.K.,
Langford C.,
Lawlor S.,
Leongamornlert D.A.,
Leversha M.,
Lloyd C.R.,
Lloyd D.M.,
Loveland J.E.,
Lovell J.,
Martin S.,
Mashreghi-Mohammadi M.,
Maslen G.L.,
Matthews L.,
McCann O.T.,
McLaren S.J.,
McLay K.,
McMurray A.,
Moore M.J.F.,
Mullikin J.C.,
Niblett D.,
Nickerson T.,
Novik K.L.,
Oliver K.,
Overton-Larty E.K.,
Parker A.,
Patel R.,
Pearce A.V.,
Peck A.I.,
Phillimore B.J.C.T.,
Phillips S.,
Plumb R.W.,
Porter K.M.,
Ramsey Y.,
Ranby S.A.,
Rice C.M.,
Ross M.T.,
Searle S.M.,
Sehra H.K.,
Sheridan E.,
Skuce C.D.,
Smith S.,
Smith M.,
Spraggon L.,
Squares S.L.,
Steward C.A.,
Sycamore N.,
Tamlyn-Hall G.,
Tester J.,
Theaker A.J.,
Thomas D.W.,
Thorpe A.,
Tracey A.,
Tromans A.,
Tubby B.,
Wall M.,
Wallis J.M.,
West A.P.,
White S.S.,
Whitehead S.L.,
Whittaker H.,
Wild A.,
Willey D.J.,
Wilmer T.E.,
Wood J.M.,
Wray P.W.,
Wyatt J.C.,
Young L.,
Younger R.M.,
Bentley D.R.,
Coulson A.,
Durbin R.M.,
Hubbard T.,
Sulston J.E.,
Dunham I.,
Rogers J.,
Beck S.;
"The DNA sequence and analysis of human chromosome 6.";
Nature 425:805-811(2003).
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[13]
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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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[14]
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NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA].
TISSUE=Bone marrow, Brain, Eye, Lung, Pancreas, Placenta, and Prostate;
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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[15]
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PROTEIN SEQUENCE OF 25-36; 47-56; 61-78 AND 81-93, AND MASS SPECTROMETRY.
TISSUE=B-cell lymphoma;
Bienvenut W.V.;
Submitted (MAR-2005) to UniProtKB.
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[16]
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ACETYLATION AT LYS-6; LYS-9; LYS-13 AND LYS-17.
PubMed=7664735 [NCBI, ExPASy, EBI, Israel, Japan]
O'Neill L.P.,
Turner B.M.;
"Histone H4 acetylation distinguishes coding regions of the human genome from heterochromatin in a differentiation-dependent but transcription-independent manner.";
EMBO J. 14:3946-3957(1995).
|
[17]
|
DNA-BINDING REGION.
DOI=10.1038/331365a0; PubMed=3340182 [NCBI, ExPASy, EBI, Israel, Japan]
Ebralidse K.K.,
Grachev S.A.,
Mirzabekov A.D.;
"A highly basic histone H4 domain bound to the sharply bent region of nucleosomal DNA.";
Nature 331:365-367(1988).
|
[18]
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ACETYLATION AT LYS-6; LYS-9; LYS-13 AND LYS-17.
DOI=10.1016/0014-5793(89)80947-0; PubMed=2474456 [NCBI, ExPASy, EBI, Israel, Japan]
Turner B.M.,
O'Neill L.P.,
Allan I.M.;
"Histone H4 acetylation in human cells. Frequency of acetylation at different sites defined by immunolabeling with site-specific antibodies.";
FEBS Lett. 253:141-145(1989).
|
[19]
|
METHYLATION AT ARG-4.
DOI=10.1016/S0960-9822(01)00294-9; PubMed=11448779 [NCBI, ExPASy, EBI, Israel, Japan]
Strahl B.D.,
Briggs S.D.,
Brame C.J.,
Caldwell J.A.,
Koh S.S.,
Ma H.,
Cook R.G.,
Shabanowitz J.,
Hunt D.F.,
Stallcup M.R.,
Allis C.D.;
"Methylation of histone H4 at arginine 3 occurs in vivo and is mediated by the nuclear receptor coactivator PRMT1.";
Curr. Biol. 11:996-1000(2001).
|
[20]
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METHYLATION AT ARG-4.
DOI=10.1126/science.1060781; PubMed=11387442 [NCBI, ExPASy, EBI, Israel, Japan]
Wang H.,
Huang Z.-Q.,
Xia L.,
Feng Q.,
Erdjument-Bromage H.,
Strahl B.D.,
Briggs S.D.,
Allis C.D.,
Wong J.,
Tempst P.,
Zhang Y.;
"Methylation of histone H4 at arginine 3 facilitating transcriptional activation by nuclear hormone receptor.";
Science 293:853-857(2001).
|
[21]
|
METHYLATION AT LYS-21.
DOI=10.1016/S1097-2765(02)00548-8; PubMed=12086618 [NCBI, ExPASy, EBI, Israel, Japan]
Nishioka K.,
Rice J.C.,
Sarma K.,
Erdjument-Bromage H.,
Werner J.,
Wang Y.,
Chuikov S.,
Valenzuela P.,
Tempst P.,
Steward R.,
Lis J.T.,
Allis C.D.,
Reinberg D.;
"PR-Set7 is a nucleosome-specific methyltransferase that modifies lysine 20 of histone H4 and is associated with silent chromatin.";
Mol. Cell 9:1201-1213(2002).
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[22]
|
SUMOYLATION.
DOI=10.1073/pnas.1735528100; PubMed=14578449 [NCBI, ExPASy, EBI, Israel, Japan]
Shiio Y.,
Eisenman R.N.;
"Histone sumoylation is associated with transcriptional repression.";
Proc. Natl. Acad. Sci. U.S.A. 100:13225-13230(2003).
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[23]
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METHYLATION [LARGE SCALE ANALYSIS] AT LYS-21, AND MASS SPECTROMETRY.
DOI=10.1038/nmeth715; PubMed=15782174 [NCBI, ExPASy, EBI, Israel, Japan]
Ong S.E.,
Mittler G.,
Mann M.;
"Identifying and quantifying in vivo methylation sites by heavy methyl SILAC.";
Nat. Methods 1:119-126(2004).
|
[24]
|
CITRULLINATION AT ARG-4, AND METHYLATION AT ARG-4.
DOI=10.1126/science.1101400; PubMed=15345777 [NCBI, ExPASy, EBI, Israel, Japan]
Wang Y.,
Wysocka J.,
Sayegh J.,
Lee Y.-H.,
Perlin J.R.,
Leonelli L.,
Sonbuchner L.S.,
McDonald C.H.,
Cook R.G.,
Dou Y.,
Roeder R.G.,
Clarke S.,
Stallcup M.R.,
Allis C.D.,
Coonrod S.A.;
"Human PAD4 regulates histone arginine methylation levels via demethylimination.";
Science 306:279-283(2004).
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[25]
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METHYLATION AT LYS-21.
DOI=10.1074/jbc.M501691200; PubMed=15964846 [NCBI, ExPASy, EBI, Israel, Japan]
Yin Y.,
Liu C.,
Tsai S.N.,
Zhou B.,
Ngai S.M.,
Zhu G.;
"SET8 recognizes the sequence RHRK20VLRDN within the N terminus of histone H4 and mono-methylates lysine 20.";
J. Biol. Chem. 280:30025-30031(2005).
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[26]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-48, 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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[27]
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UBIQUITINATION.
DOI=10.1016/j.molcel.2006.03.035; PubMed=16678110 [NCBI, ExPASy, EBI, Israel, Japan]
Wang H.,
Zhai L.,
Xu J.,
Joo H.-Y.,
Jackson S.,
Erdjument-Bromage H.,
Tempst P.,
Xiong Y.,
Zhang Y.;
"Histone H3 and H4 ubiquitylation by the CUL4-DDB-ROC1 ubiquitin ligase facilitates cellular response to DNA damage.";
Mol. Cell 22:383-394(2006).
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[28]
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ACETYLATION [LARGE SCALE ANALYSIS] AT LYS-6; LYS-9; LYS-13 AND LYS-17, AND MASS SPECTROMETRY.
TISSUE=Epithelium;
DOI=10.1016/j.molcel.2006.06.026; PubMed=16916647 [NCBI, ExPASy, EBI, Israel, Japan]
Kim S.C.,
Sprung R.,
Chen Y.,
Xu Y.,
Ball H.,
Pei J.,
Cheng T.,
Kho Y.,
Xiao H.,
Xiao L.,
Grishin N.V.,
White M.,
Yang X.-J.,
Zhao Y.;
"Substrate and functional diversity of lysine acetylation revealed by a proteomics survey.";
Mol. Cell 23:607-618(2006).
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[29]
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ACETYLATION [LARGE SCALE ANALYSIS] AT LYS-6; LYS-9 AND LYS-13, METHYLATION AT LYS-21, PHOSPHORYLATION AT SER-2, AND MASS SPECTROMETRY.
DOI=10.1074/mcp.M500288-MCP200; PubMed=16319397 [NCBI, ExPASy, EBI, Israel, Japan]
Bonenfant D.,
Coulot M.,
Towbin H.,
Schindler P.,
van Oostrum J.;
"Characterization of histones H2A and H2B variants and their post-translational modifications by mass spectrometry.";
Mol. Cell. Proteomics 5:541-552(2006).
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[30]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-48, AND MASS SPECTROMETRY.
TISSUE=Pituitary;
DOI=10.1007/s11102-006-8916-x; PubMed=16807684 [NCBI, ExPASy, EBI, Israel, Japan]
Beranova-Giorgianni S.,
Zhao Y.,
Desiderio D.M.,
Giorgianni F.;
"Phosphoproteomic analysis of the human pituitary.";
Pituitary 9:109-120(2006).
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[31]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT TYR-52 AND TYR-89, AND MASS SPECTROMETRY.
DOI=10.1016/j.cell.2007.11.025; PubMed=18083107 [NCBI, ExPASy, EBI, Israel, Japan]
Rikova K.,
Guo A.,
Zeng Q.,
Possemato A.,
Yu J.,
Haack H.,
Nardone J.,
Lee K.,
Reeves C.,
Li Y.,
Hu Y.,
Tan Z.,
Stokes M.,
Sullivan L.,
Mitchell J.,
Wetzel R.,
Macneill J.,
Ren J.M.,
Yuan J.,
Bakalarski C.E.,
Villen J.,
Kornhauser J.M.,
Smith B.,
Li D.,
Zhou X.,
Gygi S.P.,
Gu T.-L.,
Polakiewicz R.D.,
Rush J.,
Comb M.J.;
"Global survey of phosphotyrosine signaling identifies oncogenic kinases in lung cancer.";
Cell 131:1190-1203(2007).
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[32]
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ACETYLATION AT SER-2; LYS-13 AND LYS-17, PHOSPHORYLATION AT SER-2, AND METHYLATION AT LYS-21.
DOI=10.1128/MCB.01517-07; PubMed=17967882 [NCBI, ExPASy, EBI, Israel, Japan]
Pesavento J.J.,
Yang H.,
Kelleher N.L.,
Mizzen C.A.;
"Certain and progressive methylation of histone H4 at lysine 20 during the cell cycle.";
Mol. Cell. Biol. 28:468-486(2008).
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[33]
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X-RAY CRYSTALLOGRAPHY (2.5 ANGSTROMS).
DOI=10.1093/nar/gki663; PubMed=15951514 [NCBI, ExPASy, EBI, Israel, Japan]
Tsunaka Y.,
Kajimura N.,
Tate S.,
Morikawa K.;
"Alteration of the nucleosomal DNA path in the crystal structure of a human nucleosome core particle.";
Nucleic Acids Res. 33:3424-3434(2005).
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[34]
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VARIANT [LARGE SCALE ANALYSIS] GLN-64.
DOI=10.1126/science.1133427; PubMed=16959974 [NCBI, ExPASy, EBI, Israel, Japan]
Sjoeblom T.,
Jones S.,
Wood L.D.,
Parsons D.W.,
Lin J.,
Barber T.D.,
Mandelker D.,
Leary R.J.,
Ptak J.,
Silliman N.,
Szabo S.,
Buckhaults P.,
Farrell C.,
Meeh P.,
Markowitz S.D.,
Willis J.,
Dawson D.,
Willson J.K.V.,
Gazdar A.F.,
Hartigan J.,
Wu L.,
Liu C.,
Parmigiani G.,
Park B.H.,
Bachman K.E.,
Papadopoulos N.,
Vogelstein B.,
Kinzler K.W.,
Velculescu V.E.;
"The consensus coding sequences of human breast and colorectal cancers.";
Science 314:268-274(2006).
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