SHIP1 / Unconjugated /
SHIP1 / Unconjugated /
Product Details
Supplier | Aviva Systems Biology | |
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Catalog #: | ARP61033_P050 (View supplier product page) | |
Size | 100 μl | |
Price | $289.00 | |
Antigen | SHIP1 | |
Clone | ||
Host | Rabbit | |
Isotype | IgG | |
Conjugate | Unconjugated | |
Target Species | Bovine, Canine, Equine, Guinea Pig, Human, Mouse, Porcine, Rabbit, Rat | |
Applications | WB | |
Description | This is a rabbit polyclonal antibody against INPP5D. It was validated on Western Blot by Aviva Systems Biology. At Aviva Systems Biology we manufacture rabbit polyclonal antibodies on a large scale (200-1000 products/month) of high throughput manner. Our antibodies are peptide based and protein family oriented. We usually provide antibodies covering each member of a whole protein family of your interest. We also use our best efforts to provide you antibodies recognize various epitopes of a target protein. For availability of antibody needed for your experiment, please inquire (info@avivasysbio.com). |
About SHIP1 and Purified
SHIP1 | This gene is a member of the inositol polyphosphate-5-phosphatase (INPP5) family and encodes a protein with an N-terminal SH2 domain, an inositol phosphatase domain, and two C-terminal protein interaction domains. Expression of this protein is restricted to hematopoietic cells where its movement from the cytosol to the plasma membrane is mediated by tyrosine phosphorylation. At the plasma membrane, the protein hydrolyzes the 5' phosphate from phosphatidylinositol (3,4,5)-trisphosphate and inositol-1,3,4,5-tetrakisphosphate, thereby affecting multiple signaling pathways. The protein is also partly localized to the nucleus, where it may be involved in nuclear inositol phosphate signaling processes. Overall, the protein functions as a negative regulator of myeloid cell proliferation and survival. Mutations in this gene are associated with defects and cancers of the immune system. Deficiencies in the encoded protein, SHIP1, have been associated with Inflammatory Bowel Disease types such as Crohn's Disease and Ulcerative Colitis. Alternative splicing of this gene results in multiple transcript variants. [provided by RefSeq, Jul 2020] |
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