Reviewed,
UniProtKB/Swiss-Prot Q03520 (PCPC_SPHCR)
Last modified
March 2, 2010.
Version 53.
History...
Clusters with 100%,
90%,
50% identity |
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Names and origin · Protein attributes · General annotation (Comments) · Ontologies · Sequence annotation (Features) · Sequences · References · Cross-references · Entry information · Relevant documents
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Names and originHide
| Protein names | Recommended name: Tetrachloro-P-hydroquinone reductive dehalogenase EC=2.5.1.- | ||
| Gene names |
| ||
| Organism | Sphingobium chlorophenolicum | ||
| Taxonomic identifier | 46429 [NCBI] | ||
| Taxonomic lineage | Bacteria › Proteobacteria › Alphaproteobacteria › Sphingomonadales › Sphingomonadaceae › Sphingobium |
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Protein attributesHide
| Sequence length | 248 AA. |
| Sequence status | Complete. |
| Sequence processing | The displayed sequence is further processed into a mature form. |
| Protein existence | Evidence at protein level. |
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General annotation (Comments)Hide
| Function | Sequential reduction of tetrachloro-p-hydroquinone to monochlorophenol, using glutathione as the reducing agent. Ref.2 |
| Pathway | |
| Subunit structure | Homodimer. |
| Induction | Constitutively expressed. |
| Sequence similarities | Belongs to the GST superfamily. Contains 1 GST C-terminal domain. Contains 1 GST N-terminal domain. |
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OntologiesHide
| Keywords | |
|---|---|
| Biological process | Aromatic hydrocarbons catabolism |
| Molecular function | Transferase |
| Technical term | Direct protein sequencing |
| Gene Ontology (GO) | |
| Biological process | aromatic compound catabolic process Inferred from electronic annotation. Source: UniProtKB-KW |
| Molecular function | transferase activity Inferred from electronic annotation. Source: UniProtKB-KW |
| Complete GO annotation... | |
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SequencesHide
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ReferencesHide
| [1] | "Characterization of a Flavobacterium glutathione S-transferase gene involved reductive dechlorination." Orser C.S., Dutton J., Lange C.C., Jablonski P.E., Xun L., Hargis M. J. Bacteriol. 175:2640-2644(1993) [PubMed: 8478329] [Abstract] Cited for: NUCLEOTIDE SEQUENCE [GENOMIC DNA]. Strain: ATCC 39723 / DSM 6824 / L-1. |
| [2] | "Organization and regulation of pentachlorophenol-degrading genes in Sphingobium chlorophenolicum ATCC 39723." Cai M., Xun L. J. Bacteriol. 184:4672-4680(2002) [PubMed: 12169590] [Abstract] Cited for: SEQUENCE REVISION TO 78-79 AND 180, FUNCTION. Strain: ATCC 39723 / DSM 6824 / L-1. |
| [3] | "Purification and characterization of a tetrachloro-p-hydroquinone reductive dehalogenase from a Flavobacterium sp." Xun L., Topp E., Orser C.S. J. Bacteriol. 174:8003-8007(1992) [PubMed: 1459949] [Abstract] Cited for: PROTEIN SEQUENCE OF 2-19, CHARACTERIZATION. Strain: ATCC 39723 / DSM 6824 / L-1. |
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Cross-referencesHide
Sequence databases | |
|---|---|
| EMBL GenBank DDBJ | AF512952 Genomic DNA. Translation: AAM96673.1. |
3D structure databases | |
| ModBase | Search... |
Enzyme and pathway databases | |
| BioCyc | MetaCyc:PCPCFLAVO-MONOMER. |
Family and domain databases | |
| InterPro | IPR010987. Glutathione-S-Trfase_C-like. IPR004045. Glutathione_S-Trfase_N. IPR017933. Glutathione_S_Trfase/Cl_chnl_C. IPR004046. GST_C. IPR012336. Thioredoxin-like_fold. IPR012335. Thioredoxin_fold. [Graphical view] |
| Gene3D | G3DSA:1.20.1050.10. GST_C_like. 1 hit. G3DSA:3.40.30.10. Thioredoxin_fold. 1 hit. |
| Pfam | PF00043. GST_C. 1 hit. PF02798. GST_N. 1 hit. [Graphical view] |
| SUPFAM | SSF47616. GST_C_like. 1 hit. SSF52833. Thiordxn-like_fd. 1 hit. |
| PROSITE | PS50405. GST_CTER. 1 hit. PS50404. GST_NTER. 1 hit. [Graphical view] |
| ProtoNet | Search... |
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Entry informationHide
| Entry name | PCPC_SPHCR | ||||||||
| Accession | Primary (citable) accession number: Q03520 Secondary accession number(s): Q8KN34 | ||||||||
| Entry history |
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| Entry status | Reviewed (UniProtKB/Swiss-Prot) | ||||||||
| Annotation project | HAMAP (High-quality Automated and Manual Annotation of microbial Proteomes) | ||||||||
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Relevant documentsHide
| PATHWAY comments Index of metabolic and biosynthesis pathways |
| SIMILARITY comments Index of protein domains and families |

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