Which of the following is incorrect about the G protein signaling pathways? a. The binding of the ligand to the receptor activates the G protein b. The G protein-coupled receptors are known as 7TM receptors Oc. They involve the G protein-coupled receptors (GPCR) Od. The G protein activates a kinase that catalyzes the formation of ATP
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- Cholera toxins, produced by the pathogenic bacteria Vibrio cholerae, disrupt G Protein Coupled Receptor (GPCR) signaling pathways. They interfere with... the ability of the beta subunit of a G protein to bind to the GPCR the ability of the gamma subunit of a G protein to exchange GDP for GTP the ability of the beta subunit of a G protein to bind to an effector protein the ability of the alpha subunit of a G protein to hydrolyze GTP to GDPBinding EGF to the EGF receptor causes phosphorylation of tyrosines on the cytoplasmic tail of the receptor. Which of the following best describes the mechanism by which this phosphorylation activates downstream signaling complexes? Select one A. Causes degradation of receptor by proteasome pathway B. Causes EGF receptor to be internalized so it can interact directly with downstream signaling molecules C. Tyrosine phosphorylation alters 3D structure of downstream signaling proteins causing them to change from an inactive to active conformation D. Causes release of EGF from receptor E. Alters the localization of downstream signaling partners in the cytoplasmIdentify which of the following statements is a lie? Select one: a. The docking of ligands to the receptor causes receptor-associated proteins to activate another protein to continue the signaling cascade and one example of this event is the binding of epidermal growth factor (EGF) to the EGF receptor . b. Ligands are important to initiate signal Transduction pathway. c. Ligands detach from the cell surface receptor in order to change the conformation of the receptor and initiate the signaling pathway.
- TAS2R38 codes for a G-protein coupled receptor which contributes to the tasting of PTC. What does this tell you about PTC as a type of ligand? a It is a protein-based ligand that can cross the CM into the cell b It is a lipid based ligand that can cross the CM into the cell c It is a protein-based ligand that requires a second messenger d It is a lipid-based ligand that requires a second messengerG protein-coupled receptors bind extracellular signals then activates trimeric G proteins inside the cell. Based on this information, which of the following statements best characterizes G protein- coupled receptors? O It is peripheral and monolayer associated O It is integral and transmembrane O It is peripheral and transmembrane O Itis integral and monolayer associatedIn this mechanim of receptor regulation, there is uncoupling of the signaling pathway. Even though the ligand is bound to the receptor located in the plasma membrane, downstream signaling is not occuring. This is best described as: Answers A-D A receptor internalization B receptor desensitization C receptor sensitization 5 D receptor downregulation
- The epinephrine signaling pathway plays a role in regulating glucose homeostasis in muscle cells. The signaling pathway is activated by the binding of epinephrine to the beta-2 adrenergic receptor. A simplified model of the epinephrine signaling pathway is represented in Figure 1. Epinephrine Plasma Membrane Beta-2 Adrenergic Receptor (GDP (GDP G Protein GTP GTP Adenylyl Cyclase O It breaks down glycogen O it inhibits the glycolysis process it binds to adenylyl cyclase It phosphorylates phosphorylase kinase It is inhibited by Cyclic AMP ATP Cyclic AMP Protein Kinase A -ATP ADP Phosphorylase Kinase -ATP ADP Glycogen Phosphorylase Glycogen Glucose-1-Phosphate Figure 1. A simplified model of the epinephrine signaling pathway in muscle cells Which is true of Protein Kinase A? GlycolysisPut the steps of the process of signal transduction in the order they occur (hint - try to decide which signaling pathway this is before working on the order): 1. A conformational change in the signal-receptor complex activates an enzyme. 2. Protein kinases are activated. 3. A signal molecule binds to a receptor. 4. Target proteins are phosphorylated. 5. Second messenger molecules are released. O 1, 2, 3, 4, 5 O 3, 1, 2, 4, 5 O 1, 2, 5, 3, 4 O 3, 1, 5, 2, 4 IWhich of the following is the best description of how a G protein coupled receptor responds to a ligand binding? O Binding of ligand to the receptor causes the G protein to swap out GTP for GDP Binding of ligand to the receptor causes the G proteins to dimerize and trigger cross-phosphorylation Binding of ligand to the receptor causes the G protein to become activated, then the G protein travels through the plasma membrane to activate an enzyme Binding of ligand to the G protein triggers it to swap out GDP for GTP, causing it to become activated OOO O
- The secondary messenger cyclic AMP (cAMP) is involved in many different signaling pathways, including the G protein-coupled receptor (GPCR) pathway. Which of the following describes an advantage of using cAMP as a secondary messenger in cell signaling? It conserves energy because cAMP can be converted to ATP. It increases signaling specificity because protein kinase A, the direct effector of cAMP, has few substrates. It prolongs the signal because cAMP is chemically stable and persists for a long time after ligand dissociation. It amplifies the signal because one molecule of activated adenylyl cyclase can produce many molecules of cAMP.In the B-acrenergic receptor signaling pathway where desensitization occurs, what protein acts as an effector protein? The activity of the effector protein directly affects the activity of which protein in this pathway? How would the presence of a GAP affect the desensitization process? stimulate it inhibit it have no effect What is the actual mechanism by which desensitization occurs? the receptor is ubiquitinated the hormone is phosphorylated the hormone is degraded the receptor is internalizedThe G protein coupled receptor (GPCR) pathway elicits diverse intracellular responses in different cells. The basic steps of GPCR signaling are outlined in this diagram. Which of the following statements correctly describes the process of GPCR signaling? The GPCR activation is reversible after the signal of the ligand diminishes. The membrane-embedded enzyme uses GTP as a secondary messenger to initiate gene expression. The ligand attaches to both the GPCR and the membrane-embedded enzyme to activate the GPCR pathway. The ligand-bound GPCR sends a GTP molecule to an enzyme in the membrane and switches it into an active state.