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alpha subunit of an heterotrimeric G-protein; may function in taste signal transduction. Additionally we are shipping GNA15 Antibodies (60) and and many more products for this protein.
GNA15 was not expressed in normal neuroendocrine cells but was overexpressed in gastroenteropancreatic neuroendocrine neoplasia cell lines.
Data indicate the importance of Galpha16 as a downstream effector of the non-canonical Wnt (show WNT2 ELISA Kits) signaling pathway and as a potential therapeutic target for the treatment of non small cell lung cancer.
G15 (show RBM5 ELISA Kits) ectopic presence could functionally contribute to the transformation process since siRNA-induced depletion of Galpha15 in pancreatic carcinoma cell lines dramatically inhibited anchorage-independent growth and resistance to the lack of nutrients.
The paper describes G alpha 15 resistance to arrestin (show SAG ELISA Kits)-desensitization making it differ from other heterotrimeric G proteins (Gq, Gs, Gi, G12 (show TCF3 ELISA Kits)/13 class)
This paper shows how G alpha 15 and other Gq class members phosphorylate PKD (show PRKD1 ELISA Kits) in differing patterns
This review summarizes the specific features that distinguish Galpha15/GNA15 (G15 (show RBM5 ELISA Kits) alpha subunit (show POLG ELISA Kits)) from all other alpha subunits of the Gq class. G15 (show RBM5 ELISA Kits) is a heterotrimeric G protein complex that is named after its alpha subunit (show POLG ELISA Kits).
beta3 region of Galpha16 is essential for interaction with TPR1 and the subsequent activation of Ras
Megakaryocytopoiesis was accompanied by down-regulation of the 43 kDa and 46 kDa variants of G16alpha, constant expression of Gsalpha, and up-regulation of Gqalpha and Gialpha1 (show GNAI1 ELISA Kits)/2.
role of intracellular loops of cannabinoid CB1 (show CNR1 ELISA Kits) receptor in functional interaction with Galpha16.
G protein-coupled receptors activate STAT3 (show STAT3 ELISA Kits) via G alpha(16), a G alpha subunit (show POLG ELISA Kits) which is primarily expressed in hematopoietic cells.
Data indicate that the hydrophobic core buried between helix 8 and TM1 (show TPM2 ELISA Kits)-2 of olfactory receptor (mOR (show OPRM1 ELISA Kits)-S6) is important for the activation of both G protein alpha 15 (Galpha15).
The N-terminal hydrophobic core between helix 8 and TM1 (show TPM2 ELISA Kits)-2 of mOR (show OPRM1 ELISA Kits)-S6 is important for activation of both Galpha15_olf and Galpha15.
Gna15 maps to mouse chromosome 10 and has similar tissue distribution to mouse s1p (show S1PR1 ELISA Kits)(4); transcription of the two genes may be under control of the same enhancer elements
alpha subunit of an heterotrimeric G-protein; may function in taste signal transduction
G-protein subunit alpha-15
, G-protein subunit alpha-16
, epididymis tissue protein Li 17E
, g alpha-15
, g alpha-16
, guanine nucleotide-binding protein subunit alpha-15
, guanine nucleotide-binding protein subunit alpha-16