catalog number :
MBS2521465
products full name :
ITPR3 Polyclonal Antibody
products short name :
[ITPR3]
products name syn :
[IP3R; IP3R3]
other names :
[ITPR3 protein, partial; Inositol 1,4,5-trisphosphate receptor type 3; inositol 1,4,5-trisphosphate receptor type 3; IP3 receptor; inositol 1,4,5-triphosphate receptor, type 3; insP3R3; type 3 InsP3 receptor; inositol 1,4,5-trisphosphate receptor, type 3; IP3 receptor isoform 3; IP3R 3; InsP3R3; Type 3 inositol 1,4,5-trisphosphate receptor; Type 3 InsP3 receptor]
products gene name :
[ITPR3]
other gene names :
[ITPR3; ITPR3; IP3R; IP3R3; IP3R 3; InsP3R3; Type 3 InsP3 receptor]
uniprot entry name :
ITPR3_HUMAN
purity :
Affinity purification
storage stability :
Store at -20 degree C. Avoid freeze / thaw cycles.
tested application :
ELISA (EIA), Immunohistochemistry (IHC)
app notes :
IHC: 1:50-1:200
image1 heading :
Immunohistochemistry (IHC)
image2 heading :
Immunohistochemistry (IHC)
other info1 :
Immunogen: Synthetic peptide of human ITPR3
other info2 :
Buffer: PBS with 0.05% sodium azide, 50% glycerol, pH7.3
products description :
This gene encodes a receptor for inositol 1, 4, 5-trisphosphate, a second messenger that mediates the release of intracellular calcium. The receptor contains a calcium channel at the C-terminus and the ligand-binding site at the N-terminus. Knockout studies in mice suggest that type 2 and type 3 inositol 1, 4, 5-trisphosphate receptors play a key role in exocrine secretion underlying energy metabolism and growth.
ncbi acc num :
AAI46647.1
ncbi mol weight :
304,106 Da
ncbi pathways :
Adaptive Immune System Pathway (366160); Alzheimer's Disease Pathway (83097); Alzheimer's Disease Pathway (509); Alzheimers Disease Pathway (672448); Antigen Activates B Cell Receptor (BCR) Leading To Generation Of Second Messengers Pathway (576249); Ca2+ Pathway (1127532); Calcium Regulation In The Cardiac Cell Pathway (198906); Calcium Signaling Pathway (83050); Calcium Signaling Pathway (459); Cholinergic Synapse Pathway (217716)
ncbi summary :
This gene encodes a receptor for inositol 1,4,5-trisphosphate, a second messenger that mediates the release of intracellular calcium. The receptor contains a calcium channel at the C-terminus and the ligand-binding site at the N-terminus. Knockout studies in mice suggest that type 2 and type 3 inositol 1,4,5-trisphosphate receptors play a key role in exocrine secretion underlying energy metabolism and growth. [provided by RefSeq, Aug 2010]
uniprot summary :
IP3R3: a multi-pass endoplasmic reticulum membrane receptor for inositol 1,4,5-trisphosphate, a second messenger that mediates the release of intracellular calcium. Expressed in intestinal crypt and villus epithelial cells. The receptor contains a calcium channel in its C-terminal extremity. Its large N-terminal cytoplasmic region has the ligand-binding site in the N-terminus and modulatory sites in the middle portion immediately upstream of the channel region. Phosphorylated on tyrosine residues. Phosphorylated by AKT1 on serine and/or threonine residues. Belongs to the InsP3 receptor family. Protein type: Membrane protein, multi-pass; Membrane protein, integral; Channel, ligand-gated; Channel, calcium. Chromosomal Location of Human Ortholog: 6p21. Cellular Component: nuclear outer membrane; endoplasmic reticulum membrane; endoplasmic reticulum; integral to plasma membrane; nucleoplasm; cell soma; membrane; apical part of cell; cytoplasm; nucleolus; plasma membrane; brush border; receptor complex; myelin sheath. Molecular Function: protein binding; inositol 1,3,4,5 tetrakisphosphate binding; inositol hexakisphosphate binding; intracellular ligand-gated calcium channel activity; phosphoinositide binding; inositol 1,4,5-triphosphate-sensitive calcium-release channel activity. Biological Process: epidermal growth factor receptor signaling pathway; platelet activation; inositol phosphate-mediated signaling; sensory perception of umami taste; sensory perception of sweet taste; fibroblast growth factor receptor signaling pathway; nerve growth factor receptor signaling pathway; protein heterooligomerization; signal transduction; memory; G-protein coupled receptor protein signaling pathway; elevation of cytosolic calcium ion concentration; phospholipase C activation; energy reserve metabolic process; innate immune response; sensory perception of bitter taste; vascular endothelial growth factor receptor signaling pathway; response to calcium ion; blood coagulation; regulation of insulin secretion; protein homooligomerization. Disease: Diabetes Mellitus, Insulin-dependent