Protein Info for LRK53_RS11610 in Rhodanobacter sp000427505 FW510-R12
Annotation: low molecular weight phosphotyrosine protein phosphatase
These analyses and tools can help you predict a protein's function, but be skeptical. For enzymes, over 10% of annotations from KEGG or SEED are probably incorrect. For other types of proteins, the error rates may be much higher. MetaCyc and Swiss-Prot have low error rates, but the best hits in these databases are often quite distant, so this protein's function may not be the same. TIGRFam has low error rates. Finally, many experimentally-characterized proteins are not in any of these databases. To find relevant papers, use PaperBLAST.
Protein Families and Features
Best Hits
Swiss-Prot: 45% identical to ETP_ECOLI: Low molecular weight protein-tyrosine-phosphatase Etp (etp) from Escherichia coli (strain K12)
KEGG orthology group: K01104, protein-tyrosine phosphatase [EC: 3.1.3.48] (inferred from 50% identity to psu:Psesu_2991)MetaCyc: 45% identical to phosphotyrosine-protein phosphatase Etp (Escherichia coli K-12 substr. MG1655)
Protein-tyrosine-phosphatase. [EC: 3.1.3.48]
Predicted SEED Role
"Low molecular weight protein-tyrosine-phosphatase Wzb (EC 3.1.3.48)" in subsystem Colanic acid biosynthesis (EC 3.1.3.48)
Isozymes
No predicted isozymesUse Curated BLAST to search for 3.1.3.48
Sequence Analysis Tools
PaperBLAST (search for papers about homologs of this protein)
Search CDD (the Conserved Domains Database, which includes COG and superfam)
Compare to protein structures
Predict protein localization: PSORTb (Gram-negative bacteria)
Predict transmembrane helices and signal peptides: Phobius
Check the current SEED with FIGfam search
Find homologs in fast.genomics or the ENIGMA genome browser
Find the best match in UniProt
Protein Sequence (144 amino acids)
>LRK53_RS11610 low molecular weight phosphotyrosine protein phosphatase (Rhodanobacter sp000427505 FW510-R12) MFKRILIVCTGNICRSPVAEYLFRQRMAGRDIEFASAGLGALVGSPMDATALQLLAENGI DGSMHRAHQLTPSTLRGADLVLGMEKGHVAAMVRLAPEVHGKVYLFDKWLHDKDIPDPYR QQRKVFEHVHQIITQGISSWEPYL