TGF-B Receptor I (RI) phosphorylation of Smad2/3 does all of the following EXCEPT activate Smad2/3 binding to the Co-Smad Smad4 dissociate intramolecular binding of Smad2/3 MH1 and MH2 domains. RI phosphorylation of Smad2/3 does all of these things. release Smad2/3 from the nucleus into the cytoplasm unmask the Smad2/3 nuclear localization signal (NLS).
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- An SH2-containing protein contains a mutation that changes its binding pocket such that tyrosine and phosphotyrosine bind with equal affinity. As a result, MEK activity: does not change with receptor dimerization and transautophosphorylation decreases due to changes in Raf activation increases with ligand binding-induced dimerization decreases due to allosteric inhibition of SH2-domain bindingYou have isolated a new species of infectious bacteria. The bacterium releases a toxin that you believe is adversely affecting heterotrimeric Gs (stimulatory)-protein-based signaling. To explore this hypothesis you use an epithelial cell line that is expressing a cyan fluorescent protein (CFP)-labeled α subunit and a yellow fluorescent protein (YFP)-labeled β subunit of a heterotrimeric Gs-protein. CFP emits blue light and has excitation and emission wavelengths of 440 nm and 490 nm, respectively. YFP emits yellow light and has excitation and emission wavelengths of 490 nm and 527 nm, respectively. To test your hypothesis, you perform two experiments. First, you apply a signaling ligand known to activate this Gs protein and track yellow fluorescence. Second, you apply the signaling ligand and the purified bacterial toxin simultaneously and track yellow fluorescence. Which of the following conclusion will you draw based on the above experimental data? The toxin locks the α subunit…You decide to investigate cell signaling of a pair of newly identified GPCRs, GPCR-W and GPCR-Z. Each binds the same ligand, but activates different downstream heterotrimeric G-proteins that act on adenylyl cyclase. You discover that ligand binding has opposite effects on adenylyl cyclase activity for each receptor. GPCR-W causes an increase in adenylyl cyclase activity, while GPCR-Z causes a decrease in adenylyl cyclase activity. You obtain a cell line expressing GPCR-W, GPCR-Z, the relevant G-proteins, and adenylyl cyclase. There is baseline adenylyl cyclase activity producing a baseline amount of cAMP. You embark on a research project to characterize the following mutations in the components of the signaling pathway. 2. Will each of the following mutations increase or decrease the levels of cAMP inside the cell upon adding the ligand to the cell culture? A mutation in GPCR-W that prevents G-protein activation? A mutation in GPCR-Z that prevents G-protein activation? A mutation in…
- You decide to investigate cell signaling of a pair of newly identified GPCRs, GPCR-W and GPCR-Z. Each binds the same ligand, but activates different downstream heterotrimeric G-proteins that act on adenylyl cyclase. You discover that ligand binding has opposite effects on adenylyl cyclase activity for each receptor. GPCR-W causes an increase in adenylyl cyclase activity, while GPCR-Z causes a decrease in adenylyl cyclase activity. You obtain a cell line expressing GPCR-W, GPCR-Z, the relevant G-proteins, and adenylyl cyclase. There is baseline adenylyl cyclase activity producing a baseline amount of cAMP. You embark on a research project to characterize the following mutations in the components of the signaling pathway. 2. Will each of the following mutations increase or decrease the levels of cAMP inside the cell upon adding the ligand to the cell culture? A mutation in Gi that prevents release of bound GDP. A mutation in Gs that prevents GTP hydrolysis. A mutation in Gi that…I just read an abstract of the paper “Disulfide bond-disrupting agents activate the tumor necrosis family-related apoptosis-inducing ligand/death receptor 5 pathway” and noted that “DDAs and TRAIL synergize to kill cancer cells and are cytotoxic to HER2+ cancer cells with acquired resistance to the EGFR/HER2 tyrosine kinase inhibitor Lapatinib.” For the last sentence, I am not sure the meaning of the “acquired resistance to the EGFR/HER2 tyrosine kinase inhibitor Lapatinib”. Is the “acquired resistance ... to inhibitor” a good thing or bad thing, as far as the synergize effect of DDAs and TRAIL”? Hope that expert can help.Cyclic adenosine monophosphate (CAMP) is a molecule that can act as anallosteric activator of kinase enzymes inside of the cytoplasm. Describehow CAMP molecules affect kinase enzymes?
- Which of the following domains would you not expect to see in the receptor for BMP4? A. A ligand-binding domain B. A transmembrane domain C. A cytoplasmic domain D. A DNA-binding domain E. All of the above would be seen in the receptor for BMP4Which of the following would be expected to inhibit PKC activation by a GPCR ligand? phospholipase C inhibitor cAMP phosphodiesterase inhibitor Ras inhibitor MAP kinase inhibitorA drug that inhibits the kinase activity of AKT would MOST likely have which of the following effects? A. Increased GSK-3b activity and increased CyclinD synthesis B. Increased GSK-3b activity and decreased CyclinD synthesis C. Decreased GSK-3b activity and increased CyclinD synthesis D. Decrease GSK-3b activity and decreased CyclinD synthesis
- which of hthe following would result in a persisting proliferation response to growth factor receptor activation after the ligand is no longer binding to its rceptor kinase? 1. Both a mutation that blocks the GTPas activity of Ras and a mutation that blocks the exchange of GDP with GTP would cause the response to persist. 2. a mutation that blocks the GTPas activity of Ras 3. neither a mutation that blocks the GTPas activity of Ras nor a mutation that blocks the exchange of GDP with GTP would cause the response to persist 4. a mutatiaon that blocks the exchange of GDP with GTPThe 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.EGF signals by binding to cell surface EGF receptors. Which of these observations, if true, would BEST explain EGF’s mechanism of action? A. EGF is hydrophilic and can easily diffuse through the cell membrane B. EGF is hydrophobic and can easily diffuse through the cell membrane C. EGF is hydrophilic and cannot diffuse through the cell membrane D. EGF is hydrophobic and cannot diffuse through the cell membrane