Allosteric enzymes are multi-subunit proteins with one or more active site on each subunit.
Allosteric enzymes are multi-subunit proteins with one active site on their subunit.
Allosteric enzymes are proteins involved in making and breaking of covalent bonds.
Question 2
Question
What type of graphical representation best describes the activity of Allosteric Enzymes?
Answer
Hyperbolic Curve
Sigmoidal Curve
Linear Regression
Question 3
Question
Allosteric Enzymes are said to behave cooperatively, choose the answer that best describes this behaviour?
Answer
The binding of a substrate at one active site induces a conformational change in the protein that is conveyed to other active sites and altering their affinity for substrate molecules.
The binding of a substrate at one active site inhibits a conformational change in the protein.
The binding of a substrate at one active site induces a conformational change in the protein that is conveyed to other active sites and does not affect the affinity for substrate molecules.
Question 4
Question
Choose the two models that describe Allosteric Enzymes and their effects on proteins?
Answer
Concerted Model
Ping-Pong Model
Michelis-Menten Model
Sequential Model
Question 5
Question
Aspartate Carbamoyltransferase ATCase is an example of an allosteric enzyme, What process is it involved in?
Answer
Synthesis of Pyrimidine – the formation of N-carbamoylaspartate.
Synthesis of Proteins - the formation of Peptide Bonds
Synthesis of Purines - the formation of Adenylate
Question 6
Question
What enzyme acts as an allosteric inhibitor in the synthesis of pyrimidines?
Answer
Cytosine Triphosphate
Adenine Triphosphate
Cytosine Diphosphate
Question 7
Question
What intermediate is formed in the synthesis of pyrimidines? What is the role of this intermediate?
Answer
Adenosine Tri Phosphate, ATP - Allosteric Inhibitor
Adenosine Di Phosphate, ADP - Allosteric Activator
Adenosine Tri Phosphate, ATP - Allosteric Activator