Any feedback?
Please rate this page
(sequences.php)
(0/150)

BRENDA support

Sequence of RISB_ARATH

EC Number:2.5.1.78

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
6,7-dimethyl-8-ribityllumazine synthase
O80575
Arabidopsis thaliana
227
24024
Reaction
1-deoxy-L-glycero-tetrulose 4-phosphate + 5-amino-6-(D-ribitylamino)uracil = 6,7-dimethyl-8-(D-ribityl)lumazine + 2 H2O + phosphate
Other sequences found for EC No. 2.5.1.78

General information:

Sequence
show sequence in fasta format
  0 MKSLASPPCL RLIPTAHRQL NSRQSSSACY IHGGSSVNKS NNLSFSSSTS GFASPLAVEK
 60 ELRSSFVQTA AVRHVTGSLI RGEGLRFAIV VARFNEVVTK LLLEGAIETF KKYSVREEDI
120 EVIWVPGSFE IGVVAQNLGK SGKFHAVLCI GAVIRGDTTH YDAVANSAAS GVLSASINSG
180 VPCIFGVLTC EDMDQALNRS GGKAGNKGAE TALTALEMAS LFEHHLK
Download this sequence
in fasta format
Download all sequences for 2.5.1.78
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
86240
Jordan D.B.,Bacot K.O.,Carlson T.J.,Kessel M.,Viitanen P.V.
Plant riboflavin biosynthesis. Cloning, chloroplast localization, expression, purification, and partial characterization of spinach lumazine synthase.
J. Biol. Chem.
274
22114-22121
1999
86241
Lin X.,Kaul S.,Rounsley S.D.,Shea T.P.,Benito M.-I.,Town C.D.,Fujii C.Y.,Mason T.M.,Bowman C.L.,Barnstead M.E.,Feldblyum T.V.,Buell C.R.,Ketchum K.A.,Lee J.J.,Ronning C.M.,Koo H.L.,Moffat K.S.,Cronin L.A.,Shen M.,Pai G.,Van Aken S.,Umayam L.,Tallon L.J.,Gill J.E.,Adams M.D.,Carrera A.J.,Creasy T.H.,Goodman H.M.,Somerville C.R.,Copenhaver G.P.,Preuss D.,Nierman W.C.,White O.,Eisen J.A.,Salzberg S.L.,Fraser C.M.,Venter J.C.
Sequence and analysis of chromosome 2 of the plant Arabidopsis thaliana.
Nature
402
761-768
1999
86242
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
86243
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