Sequence of AOX1_SAUVE

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
ubiquinol oxidase (non-electrogenic)
P22185
Sauromatum venosum
349
38931
Reaction
2 ubiquinol + O2 = 2 ubiquinone + 2 H2O
Sequences with same EC No.
Sequence
show sequence in fasta format
  0 MMSSRLVGTA LCRQLSHVPV PQYLPALRPT ADTASSLLHG CSAAAPAQRA GLWPPSWFSP
 60 PRHASTLSAP AQDGGKEKAA GTAGKVPPGE DGGAEKEAVV SYWAVPPSKV SKEDGSEWRW
120 TCFRPWETYQ ADLSIDLHKH HVPTTILDKL ALRTVKALRW PTDIFFQRRY ACRAMMLETV
180 AAVPGMVGGV LLHLKSLRRF EHSGGWIRAL LEEAENERMH LMTFMEVAQP RWYERALVLA
240 VQGVFFNAYF LGYLLSPKFA HRVVGYLEEE AIHSYTEFLK DIDSGAIQDC PAPAIALDYW
300 RLPQGSTLRD VVTVVRADEA HHRDVNHFAS DVHYQDLELK TTPAPLGYH
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
506060
Rhoads D.M.,McIntosh L.
Isolation and characterization of a cDNA clone encoding an alternative oxidase protein of Sauromatum guttatum (Schott).
Proc. Natl. Acad. Sci. U.S.A.
88
2122-2126
1991
506061
Rhoads D.M.,McIntosh L.
The salicylic acid-inducible alternative oxidase gene aox1 and genes encoding pathogenesis-related proteins share regions of sequence similarity in their promoters.
Plant Mol. Biol.
21
615-624
1993
506062
Umbach A.L.,Siedow J.N.
Covalent and noncovalent dimers of the cyanide-resistant alternative oxidase protein in higher plant mitochondria and their relationship to enzyme activity.
Plant Physiol.
103
845-854
1993
506063
Siedow J.N.,Umbach A.L.,Moore A.L.
The active site of the cyanide-resistant oxidase from plant mitochondria contains a binuclear iron center.
FEBS Lett.
362
10-14
1995
506064
Albury M.S.,Affourtit C.,Moore A.L.
A highly conserved glutamate residue (Glu-270) is essential for plant alternative oxidase activity.
J. Biol. Chem.
273
30301-30305
1998
506065
Andersson M.E.,Nordlund P.
A revised model of the active site of alternative oxidase.
FEBS Lett.
449
17-22
1999
506066
Albury M.S.,Affourtit C.,Crichton P.G.,Moore A.L.
Structure of the plant alternative oxidase. Site-directed mutagenesis provides new information on the active site and membrane topology.
J. Biol. Chem.
277
1190-1194
2002
506067
Crichton P.G.,Affourtit C.,Albury M.S.,Carre J.E.,Moore A.L.
Constitutive activity of Sauromatum guttatum alternative oxidase in Schizosaccharomyces pombe implicates residues in addition to conserved cysteines in alpha-keto acid activation.
FEBS Lett.
579
331-336
2005