|Immunohistochemistry (Paraffin) (IHC (P))||1:50-1:100|
|Western Blot (WB)||1:500-1:1000|
|Tested Species reactivity||Human|
|Host / Isotype||Rabbit / IgG|
|Immunogen||A synthetic peptide derived from the N-terminal region of human ADCY9|
|Purification||Antigen affinity chromatography|
|Storage buffer||Dulbecco's PBS, pH 7.4, with 150mM NaCl, 50% glycerol|
|Contains||0.02% sodium azide|
Adenylyl cyclases function to convert ATP to cyclic AMP in response to activation by a variety of hormones, neurotransmitters and other regulatory molecules. Cyclic AMP, in turn, activates several other target molecules (primarily cyclic AMP-dependent protein kinases) to control a broad range of diverse phenomena such as metabolism, gene transcription and memory. Classically, adenylyl cyclases respond to receptor-initiated signals, mediated by the Gs and Gi heterotrimeric G proteins. The binding of an agonist to a Gs-coupled receptor (i.e., alpha beta-adrenergic receptor) catalyzes the exchange of GDP (bound to G alpha s) for GTP, dissociation of GTP-G alpha sfrom G beta gamma and G alpha s-mediated activation of adenylyl cyclase. The most abundant cerebral adenylyl cyclases appears to be adenylyl cyclase IX. AC IX is confined to the gray matter and its expression is mainly neuronal, with its highest expression located at the hippocampus. ACIX is also expressed in heart, pancreas and thyrocytes. AC I and AC IX are regulated reciprocally by intracellular free Ca2+. The inhibition of AC IX by Ca2+ is blocked by the calcineurin inhibitors FK506 and cyclosporin A.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
Protein Aliases: AC9; ACIX; ADCY9; Adenylate cyclase type 9; Adenylate cyclase type IX; Adenylyl cyclase 9; ATP pyrophosphate-lyase 9; KIAA0520; type IX ATP pyrophosphate-lyase
Gene Aliases: AC9; ACIX; ADCY9; KIAA0520
UniProt ID: (Human) O60503
Entrez Gene ID: (Human) 115
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