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Sequence of UB2D1_HUMAN

EC Number:6.3.2.19

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
ubiquitin-protein ligase
P51668
Homo sapiens
147
16602
Reaction

General information:

Sequence
show sequence in fasta format
  0 MALKRIQKEL SDLQRDPPAH CSAGPVGDDL FHWQATIMGP PDSAYQGGVF FLTVHFPTDY
 60 PFKPPKIAFT TKIYHPNINS NGSICLDILR SQWSPALTVS KVLLSICSLL CDPNPDDPLV
120 PDIAQIYKSD KEKYNRHARE WTQKYAM
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
577496
Scheffner M.,Huibregtse J.M.,Howley P.M.
Identification of a human ubiquitin-conjugating enzyme that mediates the E6-AP-dependent ubiquitination of p53.
Proc. Natl. Acad. Sci. U.S.A.
91
8797-8801
1994
577497
Gehrke S.G.,Riedel H.-D.,Herrmann T.,Hadaschik B.,Bents K.,Veltkamp C.,Stremmel W.
UbcH5A, a member of human E2 ubiquitin-conjugating enzymes, is closely related to SFT, a stimulator of iron transport, and is up-regulated in hereditary hemochromatosis.
Blood
101
3288-3293
2003
577499
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
577500
Deloukas P.,Earthrowl M.E.,Grafham D.V.,Rubenfield M.,French L.,Steward C.A.,Sims S.K.,Jones M.C.,Searle S.,Scott C.,Howe K.,Hunt S.E.,Andrews T.D.,Gilbert J.G.R.,Swarbreck D.,Ashurst J.L.,Taylor A.,Battles J.,Bird C.P.,Ainscough R.,Almeida J.P.,Ashwell R.I.S.,Ambrose K.D.,Babbage A.K.,Bagguley C.L.,Bailey J.,Banerjee R.,Bates K.,Beasley H.,Bray-Allen S.,Brown A.J.,Brown J.Y.,Burford D.C.,Burrill W.,Burton J.,Cahill P.,Camire D.,Carter N.P.,Chapman J.C.,Clark S.Y.,Clarke G.,Clee C.M.,Clegg S.,Corby N.,Coulson A.,Dhami P.,Dutta I.,Dunn M.,Faulkner L.,Frankish A.,Frankland J.A.,Garner P.,Garnett J.,Gribble S.,Griffiths C.,Grocock R.,Gustafson E.,Hammond S.,Harley J.L.,Hart E.,Heath P.D.,Ho T.P.,Hopkins B.,Horne J.,Howden P.J.,Huckle E.,Hynds C.,Johnson C.,Johnson D.,Kana A.,Kay M.,Kimberley A.M.,Kershaw J.K.,Kokkinaki M.,Laird G.K.,Lawlor S.,Lee H.M.,Leongamornlert D.A.,Laird G.,Lloyd C.,Lloyd D.M.,Loveland J.,Lovell J.,McLaren S.,McLay K.E.,McMurray A.,Mashreghi-Mohammadi M.,Matthews L.,Milne S.,Nickerson T.,Nguyen M.,Overton-Larty E.,Palmer S.A.,Pearce A.V.,Peck A.I.,Pelan S.,Phillimore B.,Porter K.,Rice C.M.,Rogosin A.,Ross M.T.,Sarafidou T.,Sehra H.K.,Shownkeen R.,Skuce C.D.,Smith M.,Standring L.,Sycamore N.,Tester J.,Thorpe A.,Torcasso W.,Tracey A.,Tromans A.,Tsolas J.,Wall M.,Walsh J.,Wang H.,Weinstock K.,West A.P.,Willey D.L.,Whitehead S.L.,Wilming L.,Wray P.W.,Young L.,Chen Y.,Lovering R.C.,Moschonas N.K.,Siebert R.,Fechtel K.,Bentley D.,Durbin R.M.,Hubbard T.,Doucette-Stamm L.,Beck S.,Smith D.R.,Rogers J.
The DNA sequence and comparative analysis of human chromosome 10.
Nature
429
375-381
2004
577502
The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
Genome Res.
14
2121-2127
2004
577503
Gutierrez J.A.,Yu J.,Rivera S.,Wessling-Resnick M.
Functional expression cloning and characterization of SFT, a stimulator of Fe transport.
J. Cell Biol.
139
895-905
1997
577505
Matsuzawa S.,Reed J.C.
Siah-1, SIP, and Ebi collaborate in a novel pathway for beta-catenin degradation linked to p53 responses.
Mol. Cell
7
915-926
2001
577506
Subramaniam V.,Li H.,Wong M.J.,Kitching R.,Attisano L.,Wrana J.,Zubovits J.,Burger A.M.,Seth A.K.
The RING-H2 protein RNF11 is overexpressed in breast cancer and is a target of Smurf2 E3 ligase.
Br. J. Cancer
89
1538-1544
2003
577507
Hoeller D.,Hecker C.M.,Wagner S.,Rogov V.,Doetsch V.,Dikic I.
E3-independent monoubiquitination of ubiquitin-binding proteins.
Mol. Cell
26
891-898
2007
577508
Windheim M.,Peggie M.,Cohen P.
Two different classes of E2 ubiquitin-conjugating enzymes are required for the mono-ubiquitination of proteins and elongation by polyubiquitin chains with a specific topology.
Biochem. J.
409
723-729
2008
577509
Espinosa A.,Oke V.,Elfving A.,Nyberg F.,Covacu R.,Wahren-Herlenius M.
The autoantigen Ro52 is an E3 ligase resident in the cytoplasm but enters the nucleus upon cellular exposure to nitric oxide.
Exp. Cell Res.
314
3605-3613
2008
577510
Grou C.P.,Carvalho A.F.,Pinto M.P.,Wiese S.,Piechura H.,Meyer H.E.,Warscheid B.,Sa-Miranda C.,Azevedo J.E.
Members of the E2D (UbcH5) family mediate the ubiquitination of the conserved cysteine of Pex5p, the peroxisomal import receptor.
J. Biol. Chem.
283
14190-14197
2008
577511
Pabarcus M.K.,Hoe N.,Sadeghi S.,Patterson C.,Wiertz E.,Correia M.A.
CYP3A4 ubiquitination by gp78 (the tumor autocrine motility factor receptor, AMFR) and CHIP E3 ligases.
Arch. Biochem. Biophys.
483
66-74
2009
577512
Zeng W.,Xu M.,Liu S.,Sun L.,Chen Z.J.
Key role of Ubc5 and lysine-63 polyubiquitination in viral activation of IRF3.
Mol. Cell
36
315-325
2009
577513
David Y.,Ziv T.,Admon A.,Navon A.
The E2 ubiquitin-conjugating enzymes direct polyubiquitination to preferred lysines.
J. Biol. Chem.
285
8595-8604
2010
577514
Sheng Y.,Hong J.H.,Doherty R.,Srikumar T.,Shloush J.,Avvakumov G.V.,Walker J.R.,Xue S.,Neculai D.,Wan J.W.,Kim S.K.,Arrowsmith C.H.,Raught B.,Dhe-Paganon S.
A human ubiquitin conjugating enzyme (E2)-HECT E3 ligase structure-function screen.
Mol. Cell. Proteomics
11
329-341
2012
577515
Zhang L.,Fairall L.,Goult B.T.,Calkin A.C.,Hong C.,Millard C.J.,Tontonoz P.,Schwabe J.W.
The IDOL-UBE2D complex mediates sterol-dependent degradation of the LDL receptor.
Genes Dev.
25
1262-1274
2011