The effect of ATP on the allosteric enzyme PFK-1 is shown below. For a given concentration of fructose 6-phosphate, the PFK-1 activity increases with increasing concentrations of ATP, but a point is reached beyond which increasing the concentration of ATP inhibits the enzyme.     (a) Explain how ATP can be both a substrate and an inhibitor of PFK-1. How is the enzyme regulated by ATP?   (b) In what ways is glycolysis regulated by ATP levels?   (c) The inhibition of PFK-1 by ATP is diminished when the ADP concentration is high, as shown in the illustration. How can this observation be explained?   *A graph is included for this question*

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The effect of ATP on the allosteric enzyme PFK-1 is shown below. For a given concentration of fructose 6-phosphate, the PFK-1 activity increases with increasing concentrations of ATP, but a point is reached beyond which increasing the concentration of ATP inhibits the enzyme.

 

 

(a) Explain how ATP can be both a substrate and an inhibitor of PFK-1. How is the enzyme regulated by ATP?

 

(b) In what ways is glycolysis regulated by ATP levels?

 

(c) The inhibition of PFK-1 by ATP is diminished when the ADP concentration is high, as shown in the illustration. How can this observation be explained?

 

*A graph is included for this question*

### Graph Explanation: PFK-1 Activity vs. ATP Concentration

This graph illustrates the relationship between PFK-1 enzyme activity and ATP concentration under different ADP conditions. 

- **Axes:**
  - The vertical axis represents PFK-1 activity as a percentage of Vmax (the maximum rate of the reaction).
  - The horizontal axis represents the concentration of ATP.

- **Curves:**
  - Two curves are shown, representing low ADP and high ADP conditions.
  - Under **low ADP**, the PFK-1 activity increases with ATP concentration, reaches a peak, and then decreases.
  - Under **high ADP**, the PFK-1 activity shows a similar trend but peaks at a higher ATP concentration compared to low ADP.

- **Interpretation:**
  - PFK-1 activity is regulated by ATP and ADP concentrations.
  - The presence of high ADP shifts the peak of enzyme activity to higher ATP concentrations, indicating an adaptive response to changes in energy status within a cell. This suggests that ADP acts as an allosteric activator of PFK-1 under differing ATP concentrations.

This graph helps illustrate the role of PFK-1 in metabolic pathways, highlighting its regulatory mechanism in energy production processes like glycolysis.
Transcribed Image Text:### Graph Explanation: PFK-1 Activity vs. ATP Concentration This graph illustrates the relationship between PFK-1 enzyme activity and ATP concentration under different ADP conditions. - **Axes:** - The vertical axis represents PFK-1 activity as a percentage of Vmax (the maximum rate of the reaction). - The horizontal axis represents the concentration of ATP. - **Curves:** - Two curves are shown, representing low ADP and high ADP conditions. - Under **low ADP**, the PFK-1 activity increases with ATP concentration, reaches a peak, and then decreases. - Under **high ADP**, the PFK-1 activity shows a similar trend but peaks at a higher ATP concentration compared to low ADP. - **Interpretation:** - PFK-1 activity is regulated by ATP and ADP concentrations. - The presence of high ADP shifts the peak of enzyme activity to higher ATP concentrations, indicating an adaptive response to changes in energy status within a cell. This suggests that ADP acts as an allosteric activator of PFK-1 under differing ATP concentrations. This graph helps illustrate the role of PFK-1 in metabolic pathways, highlighting its regulatory mechanism in energy production processes like glycolysis.
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