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The product of GRB14 belongs to a small family of adapter proteins that are known to interact with a number of receptor tyrosine kinases and signaling molecules. Additionally we are shipping GRB14 Antibodies (41) and GRB14 Proteins (5) and many more products for this protein.
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The phosphorylation status of the BPS region of Grb14 determines the positive or negative role it will play in insulin receptor (show INSR ELISA Kits) signaling.
Data show that Grb14 inhibits the activity of PTP1B (show PTPN1 ELISA Kits) in retina in a phosphorylation-regulated (show PHAX ELISA Kits) manner, and that rhodopsin (show RHO ELISA Kits)-regulated Src kinase (show CSK ELISA Kits) activation in retina leads to the phosphorylation of Grb14.
Grb14 is a normal physiological modulator of CNG (show CNGA1 ELISA Kits) channel function in vivo.
Grb14 functions in vivo as a tissue-specific modulator of insulin (show INS ELISA Kits) action, most likely via repression of IR-mediated IRS-1 (show IRS1 ELISA Kits) tyrosine phosphorylation
regulation of Grb14 expression in adipose tissue may play a physiological role in insulin (show INS ELISA Kits) sensitivity
Grb14 exerts a dual role on the regulation by insulin (show INS ELISA Kits) of hepatic metabolism. It inhibits insulin receptor (show INSR ELISA Kits) catalytic activity, and as a sterol regulatory element binding protein (show CNBP ELISA Kits)-1c maturation.
These results demonstrate that Grb14 can undergo subcellular redistribution upon illumination and suggest that rhodopsin (show RHO ELISA Kits) photoexcitation may trigger signaling events alternative to the classical transducin (show GNAT1 ELISA Kits) activation.
Grb10 (show GRB10 ELISA Kits) and Grb14 have roles in regulation of insulin (show INS ELISA Kits) signaling and glucose homeostasis
Phosphorylation of Grb14 BPS domain by GSK-3 correlates with complex forming of Grb14 and insulin receptor (show INSR ELISA Kits).
Genes within recently identified loci associated with waist-hip ratio (WHR) exhibit fat depot-specific mRNA expression, which correlates with obesity-related traits. Adipose tissue (AT) mRNA expression of 6 genes (TBX15 (show TBX15 ELISA Kits)/WARS2 (show WARS2 ELISA Kits), STAB1 (show STAB1 ELISA Kits), PIGC (show PIGC ELISA Kits), ZNRF3, GRB14
Modulation of mouse rod photoreceptor responses by Grb14 protein.
ANKRD55 rs459193 and GRB14 rs13389219 associate with insulin (show INS ELISA Kits) resistance.
Studies indicate that insulin receptor (IR (show INSR ELISA Kits)) and IGF Type 1 Receptor (IGFR) have been identified as important partners of Grb10 (show GRB10 ELISA Kits)/14 and SH2B1 (show SH2B1 ELISA Kits)/B2 adaptors.
Grb14 is the first negative regulator of CEACAM3 (show CEACAM3 ELISA Kits)-initiated bacterial phagocytosis and might help to focus granulocyte responses to the subcellular sites of pathogen-host cell contact
A new role for Grb14 in finely tuning receptor signaling and modulating thyroid cancer progression.
Grb14 was recruited to FGFR1 (show FGFR1 ELISA Kits) into a trimeric complex containing also phospholipase C (show PLC ELISA Kits) gamma
serves as an adaptor protein to recruit 3-phosphoinositede-dependent kinase-1 to activated insulin receptor (show INSR ELISA Kits), thus promoting Akt (show AKT1 ELISA Kits) phosphorylation and transduction of the insulin (show INS ELISA Kits) signal
regulation of Grb14 expression levels in response to hormonal stimuli, and are consistent with its role as a repressor of insulin (show INS ELISA Kits) signaling where it is induced as a negative feedback mechanism.
These findings suggest that Grb14 may play a regulatory role in granulosa cells during follicular deviation in cattle.
The growth factor receptor (show RYK ELISA Kits) bound protein (Grb) 14 NPXY motif could be acting as a dominant negative for insulin receptor (show INSR ELISA Kits) substrate (IRS)-1 (show IRS1 ELISA Kits) functions in the retina.
Grb14 contains a phosphorylated insulin receptor interacting domain between the pleckstrin homolog) and SH2 domains that binds to and forms a specific complex with the cytoplasmic domain of IRbeta
The product of this gene belongs to a small family of adapter proteins that are known to interact with a number of receptor tyrosine kinases and signaling molecules. This gene encodes a growth factor receptor-binding protein that interacts with insulin receptors and insulin-like growth-factor receptors. This protein likely has an inhibitory effect on receptor tyrosine kinase signaling and, in particular, on insulin receptor signaling. This gene may play a role in signaling pathways that regulate growth and metabolism. Transcript variants have been reported for this gene, but their full-length natures have not been determined to date.
growth factor receptor-bound protein 14
, growth factor receptor-bound protein 14-like
, GRB14 adapter protein
, growth factor receptor bound protein 14