EC Number   |
Title   |
Organism   |
|---|
  3.1.3.2 | 3-D Model of the bee venom acid phosphatase: insights into allergenicity |
Apis mellifera |
  3.1.3.2 | A DFT study on the formation of a phosphohistidine intermediate in prostatic acid phosphatase |
Homo sapiens |
  3.1.3.2 | A histidine thiol 100 kDa tetrameric acid phosphatase from lentil, Lens esculenta, seed with the characteristics of protein tyrosine phosphatases |
Lens culinaris |
  3.1.3.2 | A homogeneous isoenzyme of human liver acid phosphatase |
Homo sapiens |
  3.1.3.2 | A major root-associated acid phosphatase in Arabidopsis, AtPAP10, is regulated by both local and systemic signals under phosphate starvation |
Arabidopsis thaliana |
  3.1.3.2 | A novel acid phosphatase excreted by Penicillium funiculosum that hydrolyzes both phosphodiesters and phosphomonoesters with aryl leaving groups |
Talaromyces funiculosus |
  3.1.3.2 | A novel acid phosphatase from cactus (Opuntia megacantha Salm-Dyck) cladodes Purification and biochemical characterization of the enzyme |
Opuntia megacantha |
  3.1.3.2 | A phosphate starvation-induced acid phosphatase from Oryza sativa: phosphate regulation and transgenic expression |
Oryza sativa |
  3.1.3.2 | A single amino acid substitution in soybean VSPalpha increases its acid phosphatase activity nearly 20-fold |
Glycine max |
  3.1.3.2 | A structure-based proposal for the catalytic mechanism of the bacterial acid phosphatase AphA belonging to the DDDD superfamily of phosphohydrolases |
Escherichia coli |