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Sequence of NCED3_ARATH

EC Number:1.13.11.51

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
9-cis-epoxycarotenoid dioxygenase
Q9LRR7
Arabidopsis thaliana
599
65857
Reaction
9'-cis-neoxanthin + O2 = 2-cis,4-trans-xanthoxin + (3S,5R,6R)-5,6-dihydroxy-6,7-didehydro-5,6-dihydro-12'-apo-beta-caroten-12'-al
Other sequences found for EC No. 1.13.11.51

General information:

Sequence
show sequence in fasta format
  0 MASFTATAAV SGRWLGGNHT QPPLSSSQSS DLSYCSSLPM ASRVTRKLNV SSALHTPPAL
 60 HFPKQSSNSP AIVVKPKAKE SNTKQMNLFQ RAAAAALDAA EGFLVSHEKL HPLPKTADPS
120 VQIAGNFAPV NEQPVRRNLP VVGKLPDSIK GVYVRNGANP LHEPVTGHHF FDGDGMVHAV
180 KFEHGSASYA CRFTQTNRFV QERQLGRPVF PKAIGELHGH TGIARLMLFY ARAAAGIVDP
240 AHGTGVANAG LVYFNGRLLA MSEDDLPYQV QITPNGDLKT VGRFDFDGQL ESTMIAHPKV
300 DPESGELFAL SYDVVSKPYL KYFRFSPDGT KSPDVEIQLD QPTMMHDFAI TENFVVVPDQ
360 QVVFKLPEMI RGGSPVVYDK NKVARFGILD KYAEDSSNIK WIDAPDCFCF HLWNAWEEPE
420 TDEVVVIGSC MTPPDSIFNE SDENLKSVLS EIRLNLKTGE STRRPIISNE DQQVNLEAGM
480 VNRNMLGRKT KFAYLALAEP WPKVSGFAKV DLTTGEVKKH LYGDNRYGGE PLFLPGEGGE
540 EDEGYILCFV HDEKTWKSEL QIVNAVSLEV EATVKLPSRV PYGFHGTFIG ADDLAKQVV
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
960310
Iuchi S.,Kobayashi M.,Taji T.,Naramoto M.,Seki M.,Kato T.,Tabata S.,Kakubari Y.,Yamaguchi-Shinozaki K.,Shinozaki K.
Regulation of drought tolerance by gene manipulation of 9-cis-epoxycarotenoid dioxygenase, a key enzyme in abscisic acid biosynthesis in Arabidopsis.
Plant J.
27
325-333
2001
960311
Sato S.,Nakamura Y.,Kaneko T.,Katoh T.,Asamizu E.,Tabata S.
Structural analysis of Arabidopsis thaliana chromosome 3. I. Sequence features of the regions of 4,504,864 bp covered by sixty P1 and TAC clones.
DNA Res.
7
131-135
2000
960312
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
960313
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
960314
Tan B.-C.,Joseph L.M.,Deng W.-T.,Liu L.,Li Q.-B.,Cline K.,McCarty D.R.
Molecular characterization of the Arabidopsis 9-cis epoxycarotenoid dioxygenase gene family.
Plant J.
35
44-56
2003
960315
Ruggiero B.,Koiwa H.,Manabe Y.,Quist T.M.,Inan G.,Saccardo F.,Joly R.J.,Hasegawa P.M.,Bressan R.A.,Maggio A.
Uncoupling the effects of abscisic acid on plant growth and water relations. Analysis of sto1/nced3, an abscisic acid-deficient but salt stress-tolerant mutant in Arabidopsis.
Plant Physiol.
136
3134-3147
2004
960316
Han S.Y.,Kitahata N.,Sekimata K.,Saito T.,Kobayashi M.,Nakashima K.,Yamaguchi-Shinozaki K.,Shinozaki K.,Yoshida S.,Asami T.
A novel inhibitor of 9-cis-epoxycarotenoid dioxygenase in abscisic acid biosynthesis in higher plants.
Plant Physiol.
135
1574-1582
2004
960317
Kitahata N.,Han S.Y.,Noji N.,Saito T.,Kobayashi M.,Nakano T.,Kuchitsu K.,Shinozaki K.,Yoshida S.,Matsumoto S.,Tsujimoto M.,Asami T.
A 9-cis-epoxycarotenoid dioxygenase inhibitor for use in the elucidation of abscisic acid action mechanisms.
Bioorg. Med. Chem.
14
5555-5561
2006
960318
Lefebvre V.,North H.,Frey A.,Sotta B.,Seo M.,Okamoto M.,Nambara E.,Marion-Poll A.
Functional analysis of Arabidopsis NCED6 and NCED9 genes indicates that ABA synthesized in the endosperm is involved in the induction of seed dormancy.
Plant J.
45
309-319
2006
960319
de Torres-Zabala M.,Truman W.,Bennett M.H.,Lafforgue G.,Mansfield J.W.,Rodriguez Egea P.,Boegre L.,Grant M.
Pseudomonas syringae pv. tomato hijacks the Arabidopsis abscisic acid signalling pathway to cause disease.
EMBO J.
26
1434-1443
2007