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Sequence of EGLN2_HUMAN

EC Number:1.14.11.29

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
hypoxia-inducible factor-proline dioxygenase
Q96KS0
Homo sapiens
407
43650
Reaction
hypoxia-inducible factor-L-proline + 2-oxoglutarate + O2 = hypoxia-inducible factor-(4R)-4-hydroxy-L-proline + succinate + CO2
Other sequences found for EC No. 1.14.11.29

General information:

Sequence
show sequence in fasta format
  0 MDSPCQPQPL SQALPQLPGS SSEPLEPEPG RARMGVESYL PCPLLPSYHC PGVPSEASAG
 60 SGTPRATATS TTASPLRDGF GGQDGGELRP LQSEGAAALV TKGCQRLAAQ GARPEAPKRK
120 WAEDGGDAPS PSKRPWARQE NQEAEREGGM SCSCSSGSGE ASAGLMEEAL PSAPERLALD
180 YIVPCMRYYG ICVKDSFLGA ALGGRVLAEV EALKRGGRLR DGQLVSQRAI PPRSIRGDQI
240 AWVEGHEPGC RSIGALMAHV DAVIRHCAGR LGSYVINGRT KAMVACYPGN GLGYVRHVDN
300 PHGDGRCITC IYYLNQNWDV KVHGGLLQIF PEGRPVVANI EPLFDRLLIF WSDRRNPHEV
360 KPAYATRYAI TVWYFDAKER AAAKDKYQLA SGQKGVQVPV SQPPTPT
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
29414
Taylor M.S.
Characterization and comparative analysis of the EGLN gene family.
Gene
275
125-132
2001
29415
Seth P.,Krop I.,Porter D.,Polyak K.
Novel estrogen and tamoxifen induced genes identified by SAGE (Serial Analysis of Gene Expression).
Oncogene
21
836-843
2002
29416
Ota T.,Suzuki Y.,Nishikawa T.,Otsuki T.,Sugiyama T.,Irie R.,Wakamatsu A.,Hayashi K.,Sato H.,Nagai K.,Kimura K.,Makita H.,Sekine M.,Obayashi M.,Nishi T.,Shibahara T.,Tanaka T.,Ishii S.,Yamamoto J.,Saito K.,Kawai Y.,Isono Y.,Nakamura Y.,Nagahari K.,Murakami K.,Yasuda T.,Iwayanagi T.,Wagatsuma M.,Shiratori A.,Sudo H.,Hosoiri T.,Kaku Y.,Kodaira H.,Kondo H.,Sugawara M.,Takahashi M.,Kanda K.,Yokoi T.,Furuya T.,Kikkawa E.,Omura Y.,Abe K.,Kamihara K.,Katsuta N.,Sato K.,Tanikawa M.,Yamazaki M.,Ninomiya K.,Ishibashi T.,Yamashita H.,Murakawa K.,Fujimori K.,Tanai H.,Kimata M.,Watanabe M.,Hiraoka S.,Chiba Y.,Ishida S.,Ono Y.,Takiguchi S.,Watanabe S.,Yosida M.,Hotuta T.,Kusano J.,Kanehori K.,Takahashi-Fujii A.,Hara H.,Tanase T.-O.,Nomura Y.,Togiya S.,Komai F.,Hara R.,Takeuchi K.,Arita M.,Imose N.,Musashino K.,Yuuki H.,Oshima A.,Sasaki N.,Aotsuka S.,Yoshikawa Y.,Matsunawa H.,Ichihara T.,Shiohata N.,Sano S.,Moriya S.,Momiyama H.,Satoh N.,Takami S.,Terashima Y.,Suzuki O.,Nakagawa S.,Senoh A.,Mizoguchi H.,Goto Y.,Shimizu F.,Wakebe H.,Hishigaki H.,Watanabe T.,Sugiyama A.,Takemoto M.,Kawakami B.,Yamazaki M.,Watanabe K.,Kumagai A.,Itakura S.,Fukuzumi Y.,Fujimori Y.,Komiyama M.,Tashiro H.,Tanigami A.,Fujiwara T.,Ono T.,Yamada K.,Fujii Y.,Ozaki K.,Hirao M.,Ohmori Y.,Kawabata A.,Hikiji T.,Kobatake N.,Inagaki H.,Ikema Y.,Okamoto S.,Okitani R.,Kawakami T.,Noguchi S.,Itoh T.,Shigeta K.,Senba T.,Matsumura K.,Nakajima Y.,Mizuno T.,Morinaga M.,Sasaki M.,Togashi T.,Oyama M.,Hata H.,Watanabe M.,Komatsu T.,Mizushima-Sugano J.,Satoh T.,Shirai Y.,Takahashi Y.,Nakagawa K.,Okumura K.,Nagase T.,Nomura N.,Kikuchi H.,Masuho Y.,Yamashita R.,Nakai K.,Yada T.,Nakamura Y.,Ohara O.,Isogai T.,Sugano S.
Complete sequencing and characterization of 21,243 full-length human cDNAs.
Nat. Genet.
36
40-45
2004
29417
Bechtel S.,Rosenfelder H.,Duda A.,Schmidt C.P.,Ernst U.,Wellenreuther R.,Mehrle A.,Schuster C.,Bahr A.,Bloecker H.,Heubner D.,Hoerlein A.,Michel G.,Wedler H.,Koehrer K.,Ottenwaelder B.,Poustka A.,Wiemann S.,Schupp I.
The full-ORF clone resource of the German cDNA consortium.
BMC Genomics
8
399-399
2007
29418
Grimwood J.,Gordon L.A.,Olsen A.S.,Terry A.,Schmutz J.,Lamerdin J.E.,Hellsten U.,Goodstein D.,Couronne O.,Tran-Gyamfi M.,Aerts A.,Altherr M.,Ashworth L.,Bajorek E.,Black S.,Branscomb E.,Caenepeel S.,Carrano A.V.,Caoile C.,Chan Y.M.,Christensen M.,Cleland C.A.,Copeland A.,Dalin E.,Dehal P.,Denys M.,Detter J.C.,Escobar J.,Flowers D.,Fotopulos D.,Garcia C.,Georgescu A.M.,Glavina T.,Gomez M.,Gonzales E.,Groza M.,Hammon N.,Hawkins T.,Haydu L.,Ho I.,Huang W.,Israni S.,Jett J.,Kadner K.,Kimball H.,Kobayashi A.,Larionov V.,Leem S.-H.,Lopez F.,Lou Y.,Lowry S.,Malfatti S.,Martinez D.,McCready P.M.,Medina C.,Morgan J.,Nelson K.,Nolan M.,Ovcharenko I.,Pitluck S.,Pollard M.,Popkie A.P.,Predki P.,Quan G.,Ramirez L.,Rash S.,Retterer J.,Rodriguez A.,Rogers S.,Salamov A.,Salazar A.,She X.,Smith D.,Slezak T.,Solovyev V.,Thayer N.,Tice H.,Tsai M.,Ustaszewska A.,Vo N.,Wagner M.,Wheeler J.,Wu K.,Xie G.,Yang J.,Dubchak I.,Furey T.S.,DeJong P.,Dickson M.,Gordon D.,Eichler E.E.,Pennacchio L.A.,Richardson P.,Stubbs L.,Rokhsar D.S.,Myers R.M.,Rubin E.M.,Lucas S.M.
The DNA sequence and biology of human chromosome 19.
Nature
428
529-535
2004
29420
The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
Genome Res.
14
2121-2127
2004
29421
Semenza G.L.
HIF-1, O(2), and the 3 PHDs: how animal cells signal hypoxia to the nucleus.
Cell
107
1-3
2001
29422
Epstein A.C.R.,Gleadle J.M.,McNeill L.A.,Hewitson K.S.,O'Rourke J.,Mole D.R.,Mukherji M.,Metzen E.,Wilson M.I.,Dhanda A.,Tian Y.M.,Masson N.,Hamilton D.L.,Jaakkola P.,Barstead R.,Hodgkin J.,Maxwell P.H.,Pugh C.W.,Schofield C.J.,Ratcliffe P.J.
C. elegans EGL-9 and mammalian homologs define a family of dioxygenases that regulate HIF by prolyl hydroxylation.
Cell
107
43-54
2001
29423
Oehme F.,Ellinghaus P.,Kolkhof P.,Smith T.J.,Ramakrishnan S.,Huetter J.,Schramm M.,Flamme I.
Overexpression of PH-4, a novel putative proline 4-hydroxylase, modulates activity of hypoxia-inducible transcription factors.
Biochem. Biophys. Res. Commun.
296
343-349
2002
29424
McNeill L.A.,Hewitson K.S.,Gleadle J.M.,Horsfall L.E.,Oldham N.J.,Maxwell P.H.,Pugh C.W.,Ratcliffe P.J.,Schofield C.J.
The use of dioxygen by HIF prolyl hydroxylase (PHD1).
Bioorg. Med. Chem. Lett.
12
1547-1550
2002
29425
Huang J.,Zhao Q.,Mooney S.M.,Lee F.S.
Sequence determinants in hypoxia-inducible factor-1alpha for hydroxylation by the prolyl hydroxylases PHD1, PHD2, and PHD3.
J. Biol. Chem.
277
39792-39800
2002
29426
Metzen E.,Berchner-Pfannschmidt U.,Stengel P.,Marxsen J.H.,Stolze I.,Klinger M.,Huang W.Q.,Wotzlaw C.,Hellwig-Burgel T.,Jelkmann W.,Acker H.,Fandrey J.
Intracellular localisation of human HIF-1 alpha hydroxylases: implications for oxygen sensing.
J. Cell Sci.
116
1319-1326
2003
29427
Appelhoff R.J.,Tian Y.M.,Raval R.R.,Turley H.,Harris A.L.,Pugh C.W.,Ratcliffe P.J.,Gleadle J.M.
Differential function of the prolyl hydroxylases PHD1, PHD2, and PHD3 in the regulation of hypoxia-inducible factor.
J. Biol. Chem.
279
38458-38465
2004
29428
Cobb R.R.,McClary J.,Manzana W.,Finster S.,Larsen B.,Blasko E.,Pearson J.,Biancalana S.,Kauser K.,Bringmann P.,Light D.R.,Schirm S.
Cloning and characterization of the rat HIF-1 alpha prolyl-4-hydroxylase-1 gene.
Protein Expr. Purif.
42
295-304
2005
29429
Tian Y.M.,Mole D.R.,Ratcliffe P.J.,Gleadle J.M.
Characterization of different isoforms of the HIF prolyl hydroxylase PHD1 generated by alternative initiation.
Biochem. J.
397
179-186
2006
29430
Cummins E.P.,Berra E.,Comerford K.M.,Ginouves A.,Fitzgerald K.T.,Seeballuck F.,Godson C.,Nielsen J.E.,Moynagh P.,Pouyssegur J.,Taylor C.T.
Prolyl hydroxylase-1 negatively regulates IkappaB kinase-beta, giving insight into hypoxia-induced NFkappaB activity.
Proc. Natl. Acad. Sci. U.S.A.
103
18154-18159
2006
29431
Steinhoff A.,Pientka F.K.,Mockel S.,Kettelhake A.,Hartmann E.,Kohler M.,Depping R.
Cellular oxygen sensing: Importins and exportins are mediators of intracellular localisation of prolyl-4-hydroxylases PHD1 and PHD2.
Biochem. Biophys. Res. Commun.
387
705-711
2009
29432
Yasumoto K.,Kowata Y.,Yoshida A.,Torii S.,Sogawa K.
Role of the intracellular localization of HIF-prolyl hydroxylases.
Biochim. Biophys. Acta
1793
792-797
2009
29433
Pappalardi M.B.,McNulty D.E.,Martin J.D.,Fisher K.E.,Jiang Y.,Burns M.C.,Zhao H.,Ho T.,Sweitzer S.,Schwartz B.,Annan R.S.,Copeland R.A.,Tummino P.J.,Luo L.
Biochemical characterization of human HIF hydroxylases using HIF protein substrates that contain all three hydroxylation sites.
Biochem. J.
436
363-369
2011
29434
Foxler D.E.,Bridge K.S.,James V.,Webb T.M.,Mee M.,Wong S.C.,Feng Y.,Constantin-Teodosiu D.,Petursdottir T.E.,Bjornsson J.,Ingvarsson S.,Ratcliffe P.J.,Longmore G.D.,Sharp T.V.
The LIMD1 protein bridges an association between the prolyl hydroxylases and VHL to repress HIF-1 activity.
Nat. Cell Biol.
14
201-208
2012
29435
Moser S.C.,Bensaddek D.,Ortmann B.,Maure J.F.,Mudie S.,Blow J.J.,Lamond A.I.,Swedlow J.R.,Rocha S.
PHD1 links cell-cycle progression to oxygen sensing through hydroxylation of the centrosomal protein Cep192.
Dev. Cell
26
381-392
2013
29436
Zhou H.,Di Palma S.,Preisinger C.,Peng M.,Polat A.N.,Heck A.J.,Mohammed S.
Toward a comprehensive characterization of a human cancer cell phosphoproteome.
J. Proteome Res.
12
260-271
2013
29437
Ahmed S.,Ayscough A.,Barker G.R.,Canning H.E.,Davenport R.,Downham R.,Harrison D.,Jenkins K.,Kinsella N.,Livermore D.G.,Wright S.,Ivetac A.D.,Skene R.,Wilkens S.J.,Webster N.A.,Hendrick A.G.
1,2,4-Triazolo-[1,5-a]pyridine HIF Prolylhydroxylase Domain-1 (PHD-1) Inhibitors With a Novel Monodentate Binding Interaction.
J. Med. Chem.
60
5663-5672
2017