QCM : Enzymes and Metabolism — 11 questions

Questions et réponses du QCM

1. Metabolism is best described as what process in living organisms?

A process that only breaks large molecules into smaller ones
The transfer of electrons between cells without chemical change
The formation of macromolecules that never releases energy
The sum of all chemical reactions that convert reactants into products

The sum of all chemical reactions that convert reactants into products

Explication

Metabolism includes the total set of chemical reactions in living organisms that convert reactants into products. The other options describe only part of the reaction types or deny energy changes.

2. What is metabolism in living organisms?

The process of converting energy into heat only
The process of energy transfer between organisms
The breakdown of all macromolecules into monomers
The sum of all chemical reactions occurring in an organism

The sum of all chemical reactions occurring in an organism

Explication

Metabolism refers to the sum of all chemical reactions that occur in living organisms, including both anabolic and catabolic processes.

3. Which statement correctly matches anabolic reactions to their energy requirement and reaction type?

They build macromolecules from monomers via condensation reactions and require energy, making them endergonic
They break macromolecules into monomers via hydrolysis and release energy, making them exergonic
They convert monomers into macromolecules by hydrolysis and release energy, making them exergonic
They build monomers into macromolecules and do not involve energy changes

They build macromolecules from monomers via condensation reactions and require energy, making them endergonic

Explication

Anabolic reactions form macromolecules from monomers using condensation reactions and require energy, so they are endergonic. A common confusion is swapping this with catabolic (breakdown and energy release) reactions.

4. Which of the following best describes metabolism in living organisms?

The process of energy transfer from the environment to the organism
The sum of all chemical reactions that occur in an organism
The breakdown of food molecules into waste products
The process of converting energy into heat only

The sum of all chemical reactions that occur in an organism

Explication

Metabolism encompasses all chemical reactions in an organism, including both anabolic and catabolic processes. The other options are either too narrow or incorrect descriptions of the overall process.

5. Which set lists the forms of energy important to living organisms?

Kinetic energy, potential energy, thermal energy, and chemical energy
Gravitational potential energy, sound energy, electrical energy, and nuclear energy
Light energy, motion energy, heat energy, and frictional energy
Chemical energy, bioelectric energy, radiation energy, and mechanical energy

Kinetic energy, potential energy, thermal energy, and chemical energy

Explication

The course identifies kinetic, potential, thermal, and chemical energy as the key forms important to living organisms. The distractors include energy types not listed as the core set.

6. What is the primary role of enzymes in biochemical reactions within living organisms?

To provide the energy needed for the reaction
To increase the temperature of the reaction
To change the equilibrium position of the reaction
To lower the activation energy required for the reaction

To lower the activation energy required for the reaction

Explication

Enzymes function by lowering the activation energy of reactions, making them proceed faster without affecting the overall energy change or equilibrium.

7. In cells, what is the main energy currency used to transfer usable energy?

Thermal energy measured in joules
Water at 1°C
ATP
A kilocalorie

ATP

Explication

ATP is the energy currency used in cells. A kilocalorie is a unit for measuring heat energy, not the cellular energy currency.

8. When was the concept of enzyme induced fit, which explains how substrate binding causes conformational changes in enzymes, first proposed?

In the early 20th century
During the 1950s
In the 1970s
In the 1990s

During the 1950s

Explication

The induced fit model was proposed in the 1950s as an improvement over the rigid lock-and-key model, emphasizing enzyme flexibility during substrate binding.

9. How does the induced-fit model differ from the lock-and-key model in enzyme catalysis?

The induced-fit model states that enzymes are permanently altered after substrate binding, whereas the lock-and-key model states enzymes are unchanged.
The lock-and-key model involves enzymes changing shape to fit the substrate, whereas the induced-fit model involves a fixed enzyme structure.
The induced-fit model suggests the enzyme's active site changes shape to fit the substrate, while the lock-and-key model proposes a rigid active site that exactly matches the substrate.
Both models suggest enzymes have a rigid active site that only fits specific substrates.

The induced-fit model suggests the enzyme's active site changes shape to fit the substrate, while the lock-and-key model proposes a rigid active site that exactly matches the substrate.

Explication

The induced-fit model proposes that substrate binding causes the enzyme to change shape, moulding the active site to fit the substrate more precisely, unlike the lock-and-key model which suggests a rigid active site.

10. Who proposed the induced-fit model of enzyme activity, which describes how substrate binding causes conformational changes in enzymes?

Linus Pauling
Francis Crick
Daniel Koshland
James Watson

Daniel Koshland

Explication

Daniel Koshland proposed the induced-fit model, which suggests that substrate binding induces a conformational change in the enzyme, unlike the earlier lock-and-key model.

11. What is the primary effect of increasing temperature on enzyme activity until the enzyme's optimum temperature is reached?

It decreases enzyme activity due to increased molecular motion.
It increases enzyme activity by causing more collisions between enzyme and substrate.
It has no effect on enzyme activity.
It causes enzyme denaturation immediately.

It increases enzyme activity by causing more collisions between enzyme and substrate.

Explication

Increasing temperature initially increases enzyme activity by speeding up molecular collisions until the optimum temperature is reached. Beyond this point, enzyme activity declines due to denaturation.

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What is metabolism in living organisms?

The sum of all chemical reactions converting reactants into products.

Metabolism definition

Sum of all chemical reactions in organisms.

What type of energy change characterizes anabolic reactions?

They are endergonic, requiring energy.

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