The oxyanion hole is comprised of hydrogen bonding atoms that project into a space on the active site that will have all H-bonding potential satisfied only during the catalytic cycle of the reaction. True or False? The catalytic triad residues are all next to each other in the primary sequence of trypsin. True or False?
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The oxyanion hole is comprised of hydrogen bonding atoms that project into a space on the active site that will have all H-bonding potential satisfied only during the catalytic cycle of the reaction. True or False?
The catalytic triad residues are all next to each other in the primary sequence of trypsin. True or False?
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- The oxyanion hole deprotonates an incoming water molecule to convert it to a potent nucleophile. True or False? The oxyanion hole is comprised of hydrogen bonding atoms that project into a space on the active site that will have all H-bonding potential satisfied only during the catalytic cycle of the reaction. True or False? The catalytic triad residues are all next to each other in the primary sequence of trypsin. True or False?You have discovered a new enzyme that has a nearly identical active site to chymotrypsin. This enzyme uses the same catalytic triade and the same reaction mechanism as chymotrypsin. New enzyme differs from chymotrypsin because it cuts peptides at the C terminus of polar, non-ionizable R groups. 1) Beginning with the first tetrahedral intermediate, draw the mechanism of catalysis that occurs to cleave the tripeptide Asn - Phe - Lys substrate, ending the answer with product x free enzyme.You have discovered a new enzyme that has a nearly identical active site to chymotrypsin. This new enzyme uses the same catalytic triad and the same reaction mechanism as chymotrypsin. Your new enzyme differs from chymotrypsin because it cuts peptides at the C terminus of polar, non- ionizable R groups.A) Beginning with the first tetrahedral intermediate, draw the mechanism of catalysis that occurs to cleave the tripeptide Asn- Phe- Lys substrate ending your answer with the product and free enzyme.
- You have discovered a new enzyme that has a nearly identical active site to chymotrypsin. This new enzyme uses the same catalytic triad and the same reaction mechanism as chymotrypsin. Your new enzyme differs from chymotrypsin because it cuts peptides at the C terminus of polar, non- ionizable R groups. A) Beginning with the first tetrahedral intermediate, draw the mechanism of catalysis that occurs to cleave the tripeptide Asn- Phe- Lys substrate ending your answer with the product and free enzyme. B) From the list below, which of the components would most likely be found in the area of the enzyme that substitutes the hydrophobic pocket of chymotrypsin? Very briefly explain your choice(s): Ser ile Zn+ Val C) You've constructed a molecule that is able to bind to the 1st tetrahedral intermediate of your new enzyme, preventing catalysis. From experimental results, you can see that this molecule is only able to bind to the tetrahedral intermediate. Assuming that this enzyme follows…You have discovered a new enzyme that has a nearly identical active site to chymotrypsin. This new enzyme uses the same catalytic triad and the same reaction mechanism as chymotrypsin. Your new enzyme differs from chymotrypsin because it cuts peptides at the C terminus of polar, non-ionizable R groups. a) Beginning with the first tetrahedral intermediate, draw the mechanism of catalysis that occurs to cleave the tripeptide Asn-Phe-Lys substrate ending your answer with product and free enzyme. b) From the list below, which of the components would most likely be found in the area of the enzyme that substitutes the hydrophobic pocket of chymotrypsin? Very briefly explain your choice(s)., Ser lle Zn Val c) You've constructed a molecule that is able to bind to the 1 tetrahedral intermediate of your new.enzyme, preventing catalysis. From experimental results, you can see that this molecule is only able to bind to the tetrahedral intermediate. Assuming that this enzyme follows…What is formed when serine 195 acts as a nucleophile on the carbonyl carbon of the peptide bond? What catalytic mechanism(s) is/are at play here?
- Why might the compound shown below act as a transition state analog of phosphoglucose isomerase? A drawing of the normal transition state for this enzyme is needed.UDP-glucuronosyltransferase enzymes bind the organic compound UDP-glucuronic acid (UDP-GA) in order to catalyse the transfer of a glucuronic acid group from UDP-GA to a drug molecule, releasing UDP from the active site as a product. UDP is then regenerated by the activity of another enzyme. What terms could be used to describe UDP-GA?Beginning with the 1st tetrahedral intermediate, show the complete steps in chymotrypsin mechanism that occurs to form the 2nd chymotrypsin intermediate in the chymotrypsin active site. The substrate for chymotrypsin to be used is Ala-Tyr-Gly. Further, name the amino acid(s) that would be released as a result of the reactions you'd illustrated above.
- Which of the following statements is not true about the catalytic triad in chymotrypsin? Group of answer choices the side chain of the serine 195 is hydrogen bonded to the imidazole ring of histidine the -NH group of the imidazole ring of histidine is hydrogen bonded to the carboxylate group of aspartate 102 the histidine residue serves to position the aspartate 102 side chain and to polarize its carboxylate group so that it is poised for deprotonation histidine acts as a general base catalyst none of theseLysozyme is an antibacterial enzyme found in animals. Residues Asp 101 and Arg 114 are required for efficient catalysis, although they are located at some distance from the active site Glu 35 and Asp 52. Substituting Ala for either Asp 101 or Arg 114 does not significantly alter the enzyme's tertiary structure, but significantly reduces its catalytic activity. Explain.What kind of inhibitor is threo-sphingosine? Explain this type of inhibition.