Learn in your language
Skip to content
StudyForALearn · Practise · Understand
IGCSE · Cambridge (CIE) · 0610

Enzymes and temperature

Explain a rate curve using collisions and changes in protein structure.

What you will learn

  • Explain why temperature initially increases enzyme activity.
  • Distinguish denaturation from low-temperature inactivity.

Enzymes catalyse reactions

Enzymes are biological catalysts. Their active sites interact with particular substrates, lowering the activation energy for a reaction. An enzyme is not used up each time it catalyses a reaction.

As temperature rises over a suitable range, particles have more kinetic energy and successful encounters become more frequent. This can increase the reaction rate.

High temperatures change the active site

Beyond a suitable range, bonds maintaining the enzyme's shape can be disrupted. The active site's shape changes and the substrate can no longer interact effectively. This is denaturation and explains a sharp decrease in activity.

Low temperature generally slows collisions without causing the same structural damage. An optimum temperature depends on the enzyme and conditions; 37°C is not a universal optimum for every enzyme.

Put the idea to work

Worked example

An enzyme's rate increases up to 40°C but falls sharply at 65°C. Explain both parts of the trend.

Show the worked solution
  1. Initially, higher kinetic energy increases the frequency of effective enzyme–substrate encounters.
  2. At high temperature, the enzyme's structure changes.
  3. The altered active site reduces successful substrate binding and catalysis.

Answer Faster encounters initially; denaturation at high temperature

Common mistakes

  • Do not say an enzyme is killed: it is a molecule, not a living organism.
  • A slower reaction in cold conditions does not by itself demonstrate denaturation.
Recall without your notes

What can you explain now?

Why can an enzyme often work again after being warmed from 5°C to its optimum?

Compare with the explanation

Its structure may have remained intact

The low temperature slowed molecular motion. Warming increases encounters without needing to repair a denatured active site.

After trying it yourself, choose your next review. This is your self-assessment.

Your review choice appears on Today. Sign in to sync it across devices.

Original StudyForA teaching content · AI-assisted checks · Human teacher review pending.

These lessons teach the topics represented in our current practice sets. They are not a complete course for every paper or option in the qualification.

Open related practice and resources