EC Number   |
General Information   |
Reference   |
|---|
 3.1.3.56 | physiological function |
divergent functions of polyphosphate 5-phosphatase genes, allowing the angiosperms to successfully adapt to a great number of ecological niches |
771726 |
 3.1.3.56 | physiological function |
downregulation of INPP5K disrupts muscle fiber morphology and results in abnormal eye development |
749530 |
 3.1.3.56 | physiological function |
Gs5PTase8 plays a positive role in salt tolerance and might be a candidate gene for improving soybean adaptation to salt stress. Ectopic expression of Gs5PTase8 enhances salt tolerance in plants |
772178 |
 3.1.3.56 | physiological function |
INPP5K functions extend from control of insulin signaling, endoplasmic reticulum stress response and structural integrity, myoblast differentiation, cytoskeleton organization, cell adhesion and migration, renal osmoregulation, to cancer |
768412 |
 3.1.3.56 | physiological function |
mutations of the isoform SHIP2 result in defects in insulin signaling and obesity |
730981 |
 3.1.3.56 | physiological function |
pollen dormancy and germination |
772168 |
 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 |
the enzyme has essential functions in growth, development, and stress responses in plants, yeasts, and animals |
771726 |
 3.1.3.56 | physiological function |
the enzyme is crucial for maintaining pollen dormancy |
729621 |
 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 |