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UniProtKB/Swiss-Prot entry P94132


[Entry info] [Name and origin] [References] [Comments] [Cross-references] [Keywords] [Features] [Sequence] [Tools]

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Entry information
Entry name ETFD_ACIAD
Primary accession number P94132
Secondary accession numbers None
Integrated into Swiss-Prot on November 1, 1997
Sequence was last modified on May 1, 1997 (Sequence version 1)
Annotations were last modified on    November 25, 2008 (Entry version 55)
Name and origin of the protein
Protein name Probable electron transfer flavoprotein-ubiquinone oxidoreductase
Synonyms ETF-ubiquinone oxidoreductase
ETF-QO
EC 1.5.5.1
Electron-transferring-flavoprotein dehydrogenase
ETF dehydrogenase
Gene name
Name: etfD
OrderedLocusNames: ACIAD1680
From
Acinetobacter sp. (strain ADP1) [TaxID: 62977] [HAMAP proteome]
Taxonomy Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Moraxellaceae; Acinetobacter.
Protein existence 4: Predicted;
References
[1]
NUCLEOTIDE SEQUENCE [GENOMIC DNA].
PubMed=9294455 [NCBI, ExPASy, EBI, Israel, Japan]
Williams P.A., Shaw L.E.;
"mucK, a gene in Acinetobacter calcoaceticus ADP1 (BD413), encodes the ability to grow on exogenous cis,cis-muconate as the sole carbon source.";
J. Bacteriol. 179:5935-5942(1997).
[2]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
DOI=10.1093/nar/gkh910; PubMed=15514110 [NCBI, ExPASy, EBI, Israel, Japan]
Barbe V., Vallenet D., Fonknechten N., Kreimeyer A., Oztas S., Labarre L., Cruveiller S., Robert C., Duprat S., Wincker P., Ornston L.N., Weissenbach J., Marliere P., Cohen G.N., Medigue C.;
"Unique features revealed by the genome sequence of Acinetobacter sp. ADP1, a versatile and naturally transformation competent bacterium.";
Nucleic Acids Res. 32:5766-5779(2004).
Comments
Copyright
Copyrighted by the UniProt Consortium, see http://www.uniprot.org/terms. Distributed under the Creative Commons Attribution-NoDerivs License.
Cross-references
Sequence databases
EMBL
U87258; AAC27118.1; -; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
CR543861; CAG68525.1; -; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
RefSeq YP_046347.1; -.
3D structure databases
ModBase P94132.
Enzyme and pathway databases
BioCyc ASP62977:ACIAD1680-MON; -.
Ontologies
GO
GO:0051539; Molecular function: 4 iron, 4 sulfur cluster binding (inferred from electronic annotation from UniProtKB-KW).
GO:0004174; Molecular function: electron-transferring-flavoprotein dehydrogenase activity (inferred from electronic annotation from InterPro).
GO:0005506; Molecular function: iron ion binding (inferred from electronic annotation from UniProtKB-KW).
GO:0022900; Biological process: electron transport chain (inferred from electronic annotation from UniProtKB-KW).
GO:0006810; Biological process: transport (inferred from electronic annotation from UniProtKB-KW).
QuickGo view.
Family and domain databases
InterPro IPR007859; ETFD_OxRdtase.
IPR013027; FAD_pyr_nucl-diS_OxRdtase.
IPR003042; Rng_hydrolase.
Graphical view of domain structure.
Pfam PF05187; ETF_QO; 1.
PF07992; Pyr_redox_2; 1.
Pfam graphical view of domain structure.
PRINTS PR00420; RNGMNOXGNASE.
PROSITE PS51379; 4FE4S_FER_2; 1.
PROSITE graphical view of domain structure (profiles).
ProtoNet P94132.
Genome annotation databases
GeneID 2881144; -.
GenomeReviews CR543861_GR; ACIAD1680.
KEGG aci:ACIAD1680; -.
NMPDR fig|62977.3.peg.1609; -.
Phylogenomic databases
HOGENOM P94132; -.
Genome annotation databases
CMR P94132; ACIAD1680.
Other
UniRef View cluster of proteins with at least 50% / 90% / 100% identity.
Keywords
4Fe-4S; Complete proteome; Electron transport; FAD; Flavoprotein; Iron; Iron-sulfur; Metal-binding; Oxidoreductase; Transport; Ubiquinone.
Features
SEVIEWER logo Feature table viewer FT aligner logo Feature aligner
KeyFrom   To Length Description FTId
CHAIN   1   570  570     Probable electron transfer flavoprotein-ubiquinone oxidoreductase. PRO_0000200681
DOMAIN   530   559  30     4Fe-4S ferredoxin-type. 
NP_BIND   13    27  15     FAD (Potential). 
METAL   515   515        Iron-sulfur (4Fe-4S) (Potential). 
METAL   539   539        Iron-sulfur (4Fe-4S) (Potential). 
METAL   542   542        Iron-sulfur (4Fe-4S) (Potential). 
METAL   545   545        Iron-sulfur (4Fe-4S) (Potential). 
Sequence information
Length: 570 AA [This is the length of the unprocessed precursor] Molecular weight: 62996 Da [This is the MW of the unprocessed precursor] CRC64: 0107DD88E78A7DE5 [This is a checksum on the sequence]
        10         20         30         40         50         60 
MITIEREAME FDVVIVGAGP AGLSAAIKIR QLAIENNLPD LSVCVVEKGS EVGAHILSGA 

        70         80         90        100        110        120 
VLEPRAINEL FPNWKEEGAP LNVPVTEDKT YFLMSDEKSQ EAPHWMVPKT MHNDGNYVIS 

       130        140        150        160        170        180 
LGNVVRWLGQ KAEELEVSIF PGFAAAEILY HADGTVKGIQ TGDMGIGKDG EPTHNFAPGY 

       190        200        210        220        230        240 
ELHAKYTLFA EGCRGHLGKR LINKFNLDQD ADPQHYGIGI KELWEIDPAK HKPGLVMHGS 

       250        260        270        280        290        300 
GWPLSETGSS GGWWLYHAEN NQVTLGMIVD LSYENPHMFP FMEMQRWKTH PLIKQYLEGG 

       310        320        330        340        350        360 
KRISYGARAV VKGGLNSLPK LTFPGGCLIG DDAGFLNFAK IKGSHTAMKS GMLCGEAVFE 

       370        380        390        400        410        420 
AIARGVDKGG DLAIARVVEG EDLFDKELTT YTQKFDKSWL KEELHRSRNF GPAMHKFGLW 

       430        440        450        460        470        480 
IGGAFNFVDQ NIFKVPFTLH DLQPDYSALK TQDQATFKPN YPKPDGKLTF DRLSSVFVSN 

       490        500        510        520        530        540 
TVHEENQPSH LKLTDASIPV AVNLPRWDEP AQRYCPAGVY EIVDEGEGNK RFQINAANCV 

       550        560        570 
HCKTCDIKDP SQNITWVTPE GGGGPNYPNM 

P94132 in FASTA format

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