Entry information : TpsPxDo01
Entry ID | 4129 |
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Creation | 2006-12-18 (Filippo Passardi) |
Last sequence changes | 2006-12-18 (Filippo Passardi) |
Sequence status | complete |
Reviewer | reviewer name not stored |
Last annotation changes | 2010-02-23 (Marcel Zamocky) |
Peroxidase information: TpsPxDo01
Name | TpsPxDo01 | |||||||||||||||||||||||||
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Class | Short peroxidockerin [Orthogroup: PxDo001] | |||||||||||||||||||||||||
Taxonomy | Eukaryota Bacillariophyta Coscinodiscophyceae Thalassiosiraceae Thalassiosira | |||||||||||||||||||||||||
Organism | Thalassiosira pseudonana [TaxId: 35128 ] | |||||||||||||||||||||||||
Cellular localisation | N/D |
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Tissue type | N/D |
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Inducer | N/D |
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Repressor | N/D |
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Best BLASTp hits |
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Literature and cross-references TpsPxDo01
Literature | [1] Zamocky M., Jakopitsch C., Furtmüller P.G., Dunand C. and Obinger C. (2007) Phylogenetic relationship in the peroxidase-cyclooxygenase superfamily. Proteins: Structure, Function, and Bioinformatics 72:589-605
[2] Armbrust,E.V., Berges,J.A., Bowler,C., Green,B.R., Martinez,D., Putnam,N.H., Zhou,S., Allen,A.E., Apt,K.E., Bechner,M., Brzezinski,M.A., Chaal,B.K., Chiovitti,A., Davis,A.K., Demarest,M.S., Detter,J.C., Glavina,T., Goodstein,D., Hadi,M.Z., Hellsten,U., Hildebrand,M., Jenkins,B.D., Jurka,J., Kapitonov,V.V., Kroger,N., Lau,W.W., Lane,T.W., Larimer,F.W., Lippmeier,J.C., Lucas,S., Medina,M., Montsant,A., Obornik,M., Parker,M.S., Palenik,B., Pazour,G.J., Richardson,P.M., Rynearson,T.A., Saito,M.A., Schwartz,D.C., Thamatrakoln,K., Valentin,K., Vardi,A., Wilkerson,F.P. and Rokhsar,D.S. The genome of the diatom Thalassiosira pseudonana: ecology, evolution, and metabolism. Science 306 (5693), 79-86 (2004) |
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Protein ref. | UniProtKB: B8BPZ7 (176..641) |
DNA ref. | GenBank: AAFD01000071 |
Protein sequence: TpsPxDo01
Sequence Properties first value : protein second value (mature protein) |
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Sequence Send to BLAST Send to Peroxiscan |
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Remarks | Complete sequence from genomic (Chromo 1, 2 exons). Strain="CCMP1335". Belongs to the 6th-subfamily - peroxidockers of mixed origin (possible LGT from bacteria). Signal sequence for secretion predicted with SignalP 3.0 Server: max. cleavage site probability 0.967 between pos. 23 and 24 |