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UniProtKB/Swiss-Prot entry Q5N7B4


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

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Entry information
Entry name LAC7_ORYSJ
Primary accession number Q5N7B4
Secondary accession number A2ZZL5
Integrated into Swiss-Prot on June 26, 2007
Sequence was last modified on February 1, 2005 (Sequence version 1)
Annotations were last modified on    July 22, 2008 (Entry version 30)
Name and origin of the protein
Protein name Laccase-7 [Precursor]
Synonyms EC 1.10.3.2
Benzenediol:oxygen oxidoreductase 7
Urishiol oxidase 7
Diphenol oxidase 7
Gene name
Name: LAC7
OrderedLocusNames: Os01g0850700, LOC_Os01g63190
ORFNames: P0414E03.33-1, P0529H11.22-1, OsJ_003987
From
Oryza sativa subsp. japonica (Rice) [TaxID: 39947] 
Taxonomy Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta; Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP clade; Ehrhartoideae; Oryzeae; Oryza.
Protein existence 2: Evidence at transcript level;
References
[1]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=cv. Nipponbare;
DOI=10.1038/nature01184; PubMed=12447438 [NCBI, ExPASy, EBI, Israel, Japan]
Sasaki T., Matsumoto T., Yamamoto K., Sakata K., Baba T., Katayose Y., Wu J., Niimura Y., Cheng Z., Nagamura Y., Antonio B.A., Kanamori H., Hosokawa S., Masukawa M., Arikawa K., Chiden Y., Hayashi M., Okamoto M., Ando T., Aoki H., Arita K., Hamada M., Harada C., Hijishita S., Honda M., Ichikawa Y., Idonuma A., Iijima M., Ikeda M., Ikeno M., Ito S., Ito T., Ito Y., Ito Y., Iwabuchi A., Kamiya K., Karasawa W., Katagiri S., Kikuta A., Kobayashi N., Kono I., Machita K., Maehara T., Mizuno H., Mizubayashi T., Mukai Y., Nagasaki H., Nakashima M., Nakama Y., Nakamichi Y., Nakamura M., Namiki N., Negishi M., Ohta I., Ono N., Saji S., Sakai K., Shibata M., Shimokawa T., Shomura A., Song J., Takazaki Y., Terasawa K., Tsuji K., Waki K., Yamagata H., Yamane H., Yoshiki S., Yoshihara R., Yukawa K., Zhong H., Iwama H., Endo T., Ito H., Hahn J.H., Kim H.-I., Eun M.-Y., Yano M., Jiang J., Gojobori T.;
"The genome sequence and structure of rice chromosome 1.";
Nature 420:312-316(2002).
[2]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=cv. Nipponbare;
DOI=10.1038/nature03895; PubMed=16100779 [NCBI, ExPASy, EBI, Israel, Japan]
International rice genome sequencing project (IRGSP);
"The map-based sequence of the rice genome.";
Nature 436:793-800(2005).
[3]
GENOME REANNOTATION.
STRAIN=cv. Nipponbare;
DOI=10.1101/gr.5509507; PubMed=17210932 [NCBI, ExPASy, EBI, Israel, Japan]
The rice annotation project (RAP);
"Curated genome annotation of Oryza sativa ssp. japonica and comparative genome analysis with Arabidopsis thaliana.";
Genome Res. 17:175-183(2007).
[4]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=cv. Nipponbare;
DOI=10.1371/journal.pbio.0030038; PubMed=15685292 [NCBI, ExPASy, EBI, Israel, Japan]
Yu J., Wang J., Lin W., Li S., Li H., Zhou J., Ni P., Dong W., Hu S., Zeng C., Zhang J., Zhang Y., Li R., Xu Z., Li S., Li X., Zheng H., Cong L., Lin L., Yin J., Geng J., Li G., Shi J., Liu J., Lv H., Li J., Wang J., Deng Y., Ran L., Shi X., Wang X., Wu Q., Li C., Ren X., Wang J., Wang X., Li D., Liu D., Zhang X., Ji Z., Zhao W., Sun Y., Zhang Z., Bao J., Han Y., Dong L., Ji J., Chen P., Wu S., Liu J., Xiao Y., Bu D., Tan J., Yang L., Ye C., Zhang J., Xu J., Zhou Y., Yu Y., Zhang B., Zhuang S., Wei H., Liu B., Lei M., Yu H., Li Y., Xu H., Wei S., He X., Fang L., Zhang Z., Zhang Y., Huang X., Su Z., Tong W., Li J., Tong Z., Li S., Ye J., Wang L., Fang L., Lei T., Chen C.-S., Chen H.-C., Xu Z., Li H., Huang H., Zhang F., Xu H., Li N., Zhao C., Li S., Dong L., Huang Y., Li L., Xi Y., Qi Q., Li W., Zhang B., Hu W., Zhang Y., Tian X., Jiao Y., Liang X., Jin J., Gao L., Zheng W., Hao B., Liu S.-M., Wang W., Yuan L., Cao M., McDermott J., Samudrala R., Wang J., Wong G.K.-S., Yang H.;
"The genomes of Oryza sativa: a history of duplications.";
PLoS Biol. 3:266-281(2005).
[5]
NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA].
STRAIN=cv. Nipponbare;
DOI=10.1126/science.1081288; PubMed=12869764 [NCBI, ExPASy, EBI, Israel, Japan]
The rice full-length cDNA consortium;
"Collection, mapping, and annotation of over 28,000 cDNA clones from japonica rice.";
Science 301:376-379(2003).
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
AP003242; BAD81779.1; -; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
AP004072; BAD82647.1; -; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
AP008207; BAF06729.1; -; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
CM000138; EAZ14162.1; ALT_SEQ; Genomic_DNA.[EMBL / GenBank / DDBJ] [CoDingSequence]
AK109431; -; NOT_ANNOTATED_CDS; mRNA.[EMBL / GenBank / DDBJ]
RefSeq NP_001044815.1; -.
UniGene Os.14830
3D structure databases
ModBase Q5N7B4.
Organism-specific databases
Gramene Q5N7B4; -.
Ontologies
GO
GO:0008471; Molecular function: laccase activity (inferred from electronic annotation from EC).
QuickGo view.
Family and domain databases
InterPro IPR001117; Cu-oxidase.
IPR011706; Cu-oxidase_2.
IPR011707; Cu-oxidase_3.
IPR002355; Cu_oxidase_Cu_BS.
IPR008972; Cupredoxin.
IPR017761; Laccase.
Graphical view of domain structure.
Gene3D G3DSA:2.60.40.420; Cupredoxin; 3.
Pfam PF00394; Cu-oxidase; 1.
PF07731; Cu-oxidase_2; 1.
PF07732; Cu-oxidase_3; 1.
Pfam graphical view of domain structure.
PROSITE PS00079; MULTICOPPER_OXIDASE1; 1.
PS00080; MULTICOPPER_OXIDASE2; 1.
BLOCKS Q5N7B4.
Genome annotation databases
GeneID 4324802; -.
KEGG osa:4324802; -.
NMPDR fig|39947.1.peg.7577; -.
Other
ProtoNet Q5N7B4.
UniRef View cluster of proteins with at least 50% / 90% / 100% identity.
Keywords
Apoplast; Copper; Glycoprotein; Lignin degradation; Metal-binding; Oxidoreductase; Repeat; Secreted; Signal.
Features
SEVIEWER logo Feature table viewer FT aligner logo Feature aligner
KeyFrom   To Length Description FTId
SIGNAL   1    28  28     Potential. 
CHAIN   29   559  531     Laccase-7. PRO_0000291892
DOMAIN   36   152  117     Plastocyanin-like 1. 
DOMAIN   163   316  154     Plastocyanin-like 2. 
DOMAIN   396   543  148     Plastocyanin-like 3. 
METAL   86    86        Copper 1 (By similarity). 
METAL   88    88        Copper 2 (By similarity). 
METAL   131   131        Copper 2 (By similarity). 
METAL   133   133        Copper 3 (By similarity). 
METAL   461   461        Copper 4 (By similarity). 
METAL   464   464        Copper 1 (By similarity). 
METAL   466   466        Copper 3 (By similarity). 
METAL   522   522        Copper 3 (By similarity). 
METAL   523   523        Copper 4 (By similarity). 
METAL   524   524        Copper 2 (By similarity). 
METAL   528   528        Copper 4 (By similarity). 
CARBOHYD   32    32        N-linked (GlcNAc...) (Potential). 
CARBOHYD   47    47        N-linked (GlcNAc...) (Potential). 
CARBOHYD   82    82        N-linked (GlcNAc...) (Potential). 
CARBOHYD   112   112        N-linked (GlcNAc...) (Potential). 
CARBOHYD   120   120        N-linked (GlcNAc...) (Potential). 
CARBOHYD   151   151        N-linked (GlcNAc...) (Potential). 
CARBOHYD   210   210        N-linked (GlcNAc...) (Potential). 
CARBOHYD   220   220        N-linked (GlcNAc...) (Potential). 
CARBOHYD   257   257        N-linked (GlcNAc...) (Potential). 
CARBOHYD   278   278        N-linked (GlcNAc...) (Potential). 
CARBOHYD   314   314        N-linked (GlcNAc...) (Potential). 
CARBOHYD   363   363        N-linked (GlcNAc...) (Potential). 
CARBOHYD   443   443        N-linked (GlcNAc...) (Potential). 
CARBOHYD   484   484        N-linked (GlcNAc...) (Potential). 
CARBOHYD   541   541        N-linked (GlcNAc...) (Potential). 
Sequence information
Length: 559 AA [This is the length of the unprocessed precursor] Molecular weight: 60212 Da [This is the MW of the unprocessed precursor] CRC64: E39123EF1389DDE0 [This is a checksum on the sequence]
        10         20         30         40         50         60 
MVIPWCSSMM RLLWFLFALL LARSVADAAT ANYTFTVESM RVSRLCNSTD IIAVNGLLPG 

        70         80         90        100        110        120 
PMIEVNEGDA VAVEVINGSP YNLTIHWHGI LQLLTPWADG PSMVTQCPIQ PNSSYTYRFN 

       130        140        150        160        170        180 
VTGQEGTLWW HAHSSFLRAT VYGALIIRPR NGSAYPFPAP DQEVPIVLGE WWSRNVVDIE 

       190        200        210        220        230        240 
SDAVSSGQLP RESDAFTVNG VTGELYQCAN DTFTVDVQPN TTVLLRVINA GLNTHLFFKV 

       250        260        270        280        290        300 
AGHAFTVVAV DACYTANYTT DTLVLAPGHT VDALMVTNAS AGSYYMAVQA YDSLSPTTMA 

       310        320        330        340        350        360 
VTDDTTATAI VHYNTTSTKK NATPVMPTMP QSSDSATANA FYFGLRGPPS PSAPAVPTKV 

       370        380        390        400        410        420 
DVNMTIELGL GQLPCDSTQS SCSGKSVAAA MNGVSFRLPS QMSLLEAQFN RTPGVYTADF 

       430        440        450        460        470        480 
PDAPQPSGTP MVEGTKVRRL KYNSTVEIVL QNPTAFPSEN HPIHLHGFNF FVLAQGLGNF 

       490        500        510        520        530        540 
TPGNVSGYNL VDPVSRNTLA VPTGGWAVIR FVANNPGMWF FHCHLDAHVP MGLGMVFAVD 

       550 
NGTTPDSFLP PPPADLPKC 

Q5N7B4 in FASTA format

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