EC Number   |
General Information   |
Reference   |
|---|
 3.1.3.56 | malfunction |
transgenic tobacco plants overexpressing Le5PT1 exhibit reduced growth in height, leaf area, and dry weight compared to wild type plants. The transgenic plants have lower water use efficiency than wild type and the downregulation of the drought-responsive gene, NtERD10B |
-, 768111 |
 3.1.3.56 | malfunction |
the increase in the levels of 1D-myo-inositol 1,4,5-trisphosphate/Ca2+ caused by deficiency of inositol polyphosphate 5-phosphatases is sufficient to break pollen dormancy and to trigger early germination |
729621 |
 3.1.3.56 | physiological function |
the enzyme links endoplasmic reticulum stress to insulin resistance in skeletal muscle |
751561 |
 3.1.3.56 | physiological function |
the enzyme is involved in plant growth and abiotic stress responses. Le5PT1 may have a negative role in response to water deficit through the repression of drought-inducible genes that in turn affects plant growth and development |
-, 768111 |
 3.1.3.56 | physiological function |
the enzyme is crucial for maintaining pollen dormancy |
729621 |
 3.1.3.56 | physiological function |
the enzyme has essential functions in growth, development, and stress responses in plants, yeasts, and animals |
771726 |
 3.1.3.56 | physiological function |
SHIP2 plays a role in negative regulation of insulin signaling and as a potential drug target for obesity and type 2 diabetes |
730984 |
 3.1.3.56 | physiological function |
pollen dormancy and germination |
772168 |
 3.1.3.56 | evolution |
phylogenetic analyses are performed to delineate the evolutionary history of the polyphosphate 5-phosphatase family in major angiosperm lineages |
771726 |
 3.1.3.56 | physiological function |
mutations of the isoform SHIP2 result in defects in insulin signaling and obesity |
730981 |