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Sequence of VEP1_ARATH

EC Number:1.3.1.3

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
DELTA4-3-oxosteroid 5beta-reductase
Q9STX2
Arabidopsis thaliana
388
44230
Reaction
17,21-dihydroxy-5beta-pregnane-3,11,20-trione + NADP+ = cortisone + NADPH + H+
Other sequences found for EC No. 1.3.1.3

General information:

Sequence
show sequence in fasta format
  0 MSWWWAGAIG AAKKKLDEDE PSQSFESVAL IIGVTGIVGN SLAEILPLSD TPGGPWKVYG
 60 VARRPRPTWN ADHPIDYIQC DVSDAEDTRS KLSPLTDVTH VFYVTWTNRE SESENCEANG
120 SMLRNVLQAI IPYAPNLRHV CLQTGTKHYL GPFTNVDGPR HDPPFTEDMP RLQIQNFYYT
180 QEDILFEEIK KIETVTWSIH RPNMIFGFSP YSLMNIVGTL CVYAAICKHE GSPLLFPGSK
240 KAWEGFMTAS DADLIAEQQI WAAVDPYAKN EAFNCNNADI FKWKHLWKIL AEQFGIEEYG
300 FEEGKNLGLV EMMKGKERVW EEMVKENQLQ EKKLEEVGVW WFADVILGVE GMIDSMNKSK
360 EYGFLGFRNS NNSFISWIDK YKAFKIVP
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
116494
Yang K.Y.,Moon Y.H.,Choi K.H.,Kim Y.H.,Eun M.Y.,Guh J.O.,Kim K.C.,Cho B.H.
Structure and expression of the AWI 31 gene specifically induced by wounding in Arabidopsis thaliana.
Mol. Cells
7
131-135
1997
116495
Jun J.H.,Ha C.M.,Nam H.G.
Involvement of the VEP1 gene in vascular strand development in Arabidopsis thaliana.
Plant Cell Physiol.
43
323-330
2002
116497
Herl V.,Fischer G.,Reva V.A.,Stiebritz M.,Muller Y.A.,Mueller-Uri F.,Kreis W.
The VEP1 gene (At4g24220) encodes a short-chain dehydrogenase/reductase with 3-oxo-Delta4,5-steroid 5beta-reductase activity in Arabidopsis thaliana L.
Biochimie
91
517-525
2009
116498
Mayer K.F.X.,Schueller C.,Wambutt R.,Murphy G.,Volckaert G.,Pohl T.,Duesterhoeft A.,Stiekema W.,Entian K.-D.,Terryn N.,Harris B.,Ansorge W.,Brandt P.,Grivell L.A.,Rieger M.,Weichselgartner M.,de Simone V.,Obermaier B.,Mache R.,Mueller M.,Kreis M.,Delseny M.,Puigdomenech P.,Watson M.,Schmidtheini T.,Reichert B.,Portetelle D.,Perez-Alonso M.,Boutry M.,Bancroft I.,Vos P.,Hoheisel J.,Zimmermann W.,Wedler H.,Ridley P.,Langham S.-A.,McCullagh B.,Bilham L.,Robben J.,van der Schueren J.,Grymonprez B.,Chuang Y.-J.,Vandenbussche F.,Braeken M.,Weltjens I.,Voet M.,Bastiaens I.,Aert R.,Defoor E.,Weitzenegger T.,Bothe G.,Ramsperger U.,Hilbert H.,Braun M.,Holzer E.,Brandt A.,Peters S.,van Staveren M.,Dirkse W.,Mooijman P.,Klein Lankhorst R.,Rose M.,Hauf J.,Koetter P.,Berneiser S.,Hempel S.,Feldpausch M.,Lamberth S.,Van den Daele H.,De Keyser A.,Buysshaert C.,Gielen J.,Villarroel R.,De Clercq R.,van Montagu M.,Rogers J.,Cronin A.,Quail M.A.,Bray-Allen S.,Clark L.,Doggett J.,Hall S.,Kay M.,Lennard N.,McLay K.,Mayes R.,Pettett A.,Rajandream M.A.,Lyne M.,Benes V.,Rechmann S.,Borkova D.,Bloecker H.,Scharfe M.,Grimm M.,Loehnert T.-H.,Dose S.,de Haan M.,Maarse A.C.,Schaefer M.,Mueller-Auer S.,Gabel C.,Fuchs M.,Fartmann B.,Granderath K.,Dauner D.,Herzl A.,Neumann S.,Argiriou A.,Vitale D.,Liguori R.,Piravandi E.,Massenet O.,Quigley F.,Clabauld G.,Muendlein A.,Felber R.,Schnabl S.,Hiller R.,Schmidt W.,Lecharny A.,Aubourg S.,Chefdor F.,Cooke R.,Berger C.,Monfort A.,Casacuberta E.,Gibbons T.,Weber N.,Vandenbol M.,Bargues M.,Terol J.,Torres A.,Perez-Perez A.,Purnelle B.,Bent E.,Johnson S.,Tacon D.,Jesse T.,Heijnen L.,Schwarz S.,Scholler P.,Heber S.,Francs P.,Bielke C.,Frishman D.,Haase D.,Lemcke K.,Mewes H.-W.,Stocker S.,Zaccaria P.,Bevan M.,Wilson R.K.,de la Bastide M.,Habermann K.,Parnell L.,Dedhia N.,Gnoj L.,Schutz K.,Huang E.,Spiegel L.,Sekhon M.,Murray J.,Sheet P.,Cordes M.,Abu-Threideh J.,Stoneking T.,Kalicki J.,Graves T.,Harmon G.,Edwards J.,Latreille P.,Courtney L.,Cloud J.,Abbott A.,Scott K.,Johnson D.,Minx P.,Bentley D.,Fulton B.,Miller N.,Greco T.,Kemp K.,Kramer J.,Fulton L.,Mardis E.,Dante M.,Pepin K.,Hillier L.W.,Nelson J.,Spieth J.,Ryan E.,Andrews S.,Geisel C.,Layman D.,Du H.,Ali J.,Berghoff A.,Jones K.,Drone K.,Cotton M.,Joshu C.,Antonoiu B.,Zidanic M.,Strong C.,Sun H.,Lamar B.,Yordan C.,Ma P.,Zhong J.,Preston R.,Vil D.,Shekher M.,Matero A.,Shah R.,Swaby I.K.,O'Shaughnessy A.,Rodriguez M.,Hoffman J.,Till S.,Granat S.,Shohdy N.,Hasegawa A.,Hameed A.,Lodhi M.,Johnson A.,Chen E.,Marra M.A.,Martienssen R.,McCombie W.R.
Sequence and analysis of chromosome 4 of the plant Arabidopsis thaliana.
Nature
402
769-777
1999
116499
Cheng C.Y.,Krishnakumar V.,Chan A.P.,Thibaud-Nissen F.,Schobel S.,Town C.D.
Araport11: a complete reannotation of the Arabidopsis thaliana reference genome.
Plant J.
89
789-804
2017
116500
Yamada K.,Lim J.,Dale J.M.,Chen H.,Shinn P.,Palm C.J.,Southwick A.M.,Wu H.C.,Kim C.J.,Nguyen M.,Pham P.K.,Cheuk R.F.,Karlin-Newmann G.,Liu S.X.,Lam B.,Sakano H.,Wu T.,Yu G.,Miranda M.,Quach H.L.,Tripp M.,Chang C.H.,Lee J.M.,Toriumi M.J.,Chan M.M.,Tang C.C.,Onodera C.S.,Deng J.M.,Akiyama K.,Ansari Y.,Arakawa T.,Banh J.,Banno F.,Bowser L.,Brooks S.Y.,Carninci P.,Chao Q.,Choy N.,Enju A.,Goldsmith A.D.,Gurjal M.,Hansen N.F.,Hayashizaki Y.,Johnson-Hopson C.,Hsuan V.W.,Iida K.,Karnes M.,Khan S.,Koesema E.,Ishida J.,Jiang P.X.,Jones T.,Kawai J.,Kamiya A.,Meyers C.,Nakajima M.,Narusaka M.,Seki M.,Sakurai T.,Satou M.,Tamse R.,Vaysberg M.,Wallender E.K.,Wong C.,Yamamura Y.,Yuan S.,Shinozaki K.,Davis R.W.,Theologis A.,Ecker J.R.
Empirical analysis of transcriptional activity in the Arabidopsis genome.
Science
302
842-846
2003
116502
Bauer P.,Munkert J.,Brydziun M.,Burda E.,Mueller-Uri F.,Groeger H.,Muller Y.A.,Kreis W.
Highly conserved progesterone 5 beta-reductase genes (P5 beta R) from 5 beta-cardenolide-free and 5 beta-cardenolide-producing angiosperms.
Phytochemistry
71
1495-1505
2010
116503
Bienvenut W.V.,Sumpton D.,Martinez A.,Lilla S.,Espagne C.,Meinnel T.,Giglione C.
Comparative large-scale characterisation of plant vs. mammal proteins reveals similar and idiosyncratic N-alpha acetylation features.
Mol. Cell. Proteomics
11
0-0
2012
116504
Bauer P.,Rudolph K.,Mueller-Uri F.,Kreis W.
Vein Patterning 1-encoded progesterone 5?-reductase: activity-guided improvement of catalytic efficiency.
Phytochemistry
77
53-59
2012
116505
Schmidt K.,Petersen J.,Munkert J.,Egerer-Sieber C.,Hornig M.,Muller Y.A.,Kreis W.
PRISEs (progesterone 5beta-reductase and/or iridoid synthase-like 1,4-enone reductases): Catalytic and substrate promiscuity allows for realization of multiple pathways in plant metabolism.
Phytochemistry
156
9-19
2018