6.14
Intracellular signaling pathways relay and amplify extracellular signals into the cell interior.
Several signaling pathways, such as the cyclic AMP, MAPK/ERK, and IP3/DAG pathways, transmit and amplify signals. These signals can change gene expression or cell metabolism.
For example, the cyclic AMP signaling pathway can be activated by external ligands, such as adrenaline, that bind to transmembrane G protein-coupled receptors, or GPCRs.
Ligand binding changes the shape of the GPCR, allowing it to interact with and activate a G protein on the inside of the cell.
Then, the GDP on the Gα subunit is replaced by GTP, allowing the Gα subunit to separate from the Gβγ dimer.
The activated Gα subunit stimulates the enzyme adenylyl cyclase, which converts ATP into cyclic AMP, or cAMP.
Once activated, adenylyl cyclase produces many cAMP molecules. As a result, the signal is amplified.
cAMP acts as a second messenger and activates cytosolic protein kinase A, or PKA, by causing its regulatory and catalytic subunits to separate.
PKA uses ATP to phosphorylate many target proteins, including transcription factors that regulate gene expression.
Once a ligand binds to a receptor, the signal is transmitted through the membrane and into the cytoplasm. The continuation of a signal in this manner…
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