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Sequence of PCO1_ARATH

EC Number:1.13.11.20

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
cysteine dioxygenase
Q9LXG9
Arabidopsis thaliana
293
33014
Reaction
L-cysteine + O2 = 3-sulfinoalanine
Other sequences found for EC No. 1.13.11.20

General information:

Sequence
show sequence in fasta format
  0 MGFEMKPEKE VLELISSKNQ CKSNPNSVKK KNKNKNKKMM MTWRRKKIDS PADGITAVRR
 60 LFNTCKEVFS NGGPGVIPSE DKIQQLREIL DDMKPEDVGL TPTMPYFRPN SGVEARSSPP
120 ITYLHLHQCD QFSIGIFCLP PSGVIPLHNH PGMTVFSKLL FGTMHIKSYD WVVDAPMRDS
180 KTRLAKLKVD STFTAPCNAS ILYPEDGGNM HRFTAITACA VLDVLGPPYC NPEGRHCTYF
240 LEFPLDKLSS EDDDVLSSEE EKEGYAWLQE RDDNPEDHTN VVGALYRGPK VED
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
456661
Tabata S.,Kaneko T.,Nakamura Y.,Kotani H.,Kato T.,Asamizu E.,Miyajima N.,Sasamoto S.,Kimura T.,Hosouchi T.,Kawashima K.,Kohara M.,Matsumoto M.,Matsuno A.,Muraki A.,Nakayama S.,Nakazaki N.,Naruo K.,Okumura S.,Shinpo S.,Takeuchi C.,Wada T.,Watanabe A.,Yamada M.,Yasuda M.,Sato S.,de la Bastide M.,Huang E.,Spiegel L.,Gnoj L.,O'Shaughnessy A.,Preston R.,Habermann K.,Murray J.,Johnson D.,Rohlfing T.,Nelson J.,Stoneking T.,Pepin K.,Spieth J.,Sekhon M.,Armstrong J.,Becker M.,Belter E.,Cordum H.,Cordes M.,Courtney L.,Courtney W.,Dante M.,Du H.,Edwards J.,Fryman J.,Haakensen B.,Lamar E.,Latreille P.,Leonard S.,Meyer R.,Mulvaney E.,Ozersky P.,Riley A.,Strowmatt C.,Wagner-McPherson C.,Wollam A.,Yoakum M.,Bell M.,Dedhia N.,Parnell L.,Shah R.,Rodriguez M.,Hoon See L.,Vil D.,Baker J.,Kirchoff K.,Toth K.,King L.,Bahret A.,Miller B.,Marra M.A.,Martienssen R.,McCombie W.R.,Wilson R.K.,Murphy G.,Bancroft I.,Volckaert G.,Wambutt R.,Duesterhoeft A.,Stiekema W.,Pohl T.,Entian K.-D.,Terryn N.,Hartley N.,Bent E.,Johnson S.,Langham S.-A.,McCullagh B.,Robben J.,Grymonprez B.,Zimmermann W.,Ramsperger U.,Wedler H.,Balke K.,Wedler E.,Peters S.,van Staveren M.,Dirkse W.,Mooijman P.,Klein Lankhorst R.,Weitzenegger T.,Bothe G.,Rose M.,Hauf J.,Berneiser S.,Hempel S.,Feldpausch M.,Lamberth S.,Villarroel R.,Gielen J.,Ardiles W.,Bents O.,Lemcke K.,Kolesov G.,Mayer K.F.X.,Rudd S.,Schoof H.,Schueller C.,Zaccaria P.,Mewes H.-W.,Bevan M.,Fransz P.F.
Sequence and analysis of chromosome 5 of the plant Arabidopsis thaliana.
Nature
408
823-826
2000
456662
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
456663
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
456665
Mustroph A.,Lee S.C.,Oosumi T.,Zanetti M.E.,Yang H.,Ma K.,Yaghoubi-Masihi A.,Fukao T.,Bailey-Serres J.
Cross-kingdom comparison of transcriptomic adjustments to low-oxygen stress highlights conserved and plant-specific responses.
Plant Physiol.
152
1484-1500
2010
456666
Weits D.A.,Giuntoli B.,Kosmacz M.,Parlanti S.,Hubberten H.M.,Riegler H.,Hoefgen R.,Perata P.,van Dongen J.T.,Licausi F.
Plant cysteine oxidases control the oxygen-dependent branch of the N-end-rule pathway.
Nat. Commun.
5
3425-3425
2014
456667
White M.D.,Klecker M.,Hopkinson R.J.,Weits D.A.,Mueller C.,Naumann C.,O'Neill R.,Wickens J.,Yang J.,Brooks-Bartlett J.C.,Garman E.F.,Grossmann T.N.,Dissmeyer N.,Flashman E.
Plant cysteine oxidases are dioxygenases that directly enable arginyl transferase-catalysed arginylation of N-end rule targets.
Nat. Commun.
8
14690-14690
2017
456668
White M.D.,Kamps J.J.A.G.,East S.,Taylor Kearney L.J.,Flashman E.
The plant cysteine oxidases from Arabidopsis thaliana are kinetically tailored to act as oxygen sensors.
J. Biol. Chem.
293
11786-11795
2018