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Adenylate cyclase type 9 PKA complex PKA complex Protein kinase C G protein complex Inositol 1,4,5- trisphosphate receptor type 1 Calmodulin Phospholipase C Guanine nucleotide- binding protein alpha Calmodulin Guanine nucleotide- binding protein G(I)/G(S)/G(T) subunit beta-1 Guanine nucleotide- binding protein G(I)/G(S)/G(O) subunit gamma-12 Ca+ Ca+ GDP GTP ATP cAMP Inositol 1,4,5-trisphosphate Phosphatidylinositol 4,5-bisphosphate Diacylglycerol GTP Pi Pi Calcium Ca+ G protein-coupled receptor Ion Channel Ion Channel Troponin Troponin Ca+ Sarcoplasmic Reticulum Cytosol Myocyte The G protein complex separates into alpha and beta/gamma subunits. GDP is replaced with GTP on the alpha subunit. Activated PKA can phosphorylate ion channels, the channel effected will depend on the type of muscle Activated PKA phosphorylates the IP3 receptor to reduce its affinity for IP3. Activated PKA phosphorylates phospholipase C. PKC is able to activate ion channels, the type of channel activated will depend on the type of muscle In smooth muscle cells, calcium will bind to calmodulin to cause smooth muscle contraction when levels of calcium are high In cardiac and skeletal muscle cells, calcium will bind to troponin to cause smooth muscle contraction when levels of calcium are high
ADCY9 PRKAR1A PRKAR2A PRKCA GNB1 ITPR1 CALM1 PLCB1 GNAS CALM1 GNB1 GNG12 Calcium Calcium Guanosine diphosphate Guanosine triphosphate Adenosine triphosphate cAMP Inositol 1,4,5- trisphosphate Phosphatidylinositol 4,5- bisphosphate Diacylglycerol Guanosine triphosphate Phosphate Phosphate Calcium G protein-coupled receptor Ion Channel Ion Channel Troponin Troponin Calcium
ADCY9 PRKAR1A PRKAR2A PRKCA GNB1 ITPR1 CALM1 PLCB1 GNAS CALM1 GNB1 GNG12 Ca+ Ca+ GDP GTP ATP cAMP Inotp P45P Diacylg GTP Pi Pi Ca2+ Ca+ GPCR Ion Cha Ion Cha Troponi Troponi Ca+ Sarcoplasmic Reticulum Cytosol Myocyte The G protein complex separates into alpha and beta/gamma subunits. GDP is replaced with GTP on the alpha subunit. Activated PKA can phosphorylate ion channels, the channel effected will depend on the type of muscle Activated PKA phosphorylates the IP3 receptor to reduce its affinity for IP3. Activated PKA phosphorylates phospholipase C. PKC is able to activate ion channels, the type of channel activated will depend on the type of muscle In smooth muscle cells, calcium will bind to calmodulin to cause smooth muscle contraction when levels of calcium are high In cardiac and skeletal muscle cells, calcium will bind to troponin to cause smooth muscle contraction when levels of calcium are high
ADCY9 PRKAR1A PRKAR2A PRKCA GNB1 ITPR1 CALM1 PLCB1 GNAS CALM1 GNB1 GNG12 Ca2+ Ca2+ GDP GTP ATP cAMP Inotp P45P Diacylg GTP Pi Pi Ca2+ GPCR Ion Cha Ion Cha Troponi Troponi Ca2+