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Enzymes

Enzymes. What’s the missing link?. What is the link between digestion, photosynthesis, respiration and DNA replication?. They all depend on enzymes. What are enzymes?.

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Enzymes

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  1. Enzymes

  2. What’s the missing link? What is the link between digestion, photosynthesis, respiration and DNA replication? They all depend on enzymes.

  3. What are enzymes? Enzymes are biological catalysts – they speed up the chemical reactions that take place inside all cells, but without being used up in the process. There are many thousands of different types of enzyme, and each one catalyzes a different reaction. Cells create enzymes based on instructions carried in the cell’s genes.

  4. What are enzymes made of? Enzymes are protein molecules, and so are made up of amino acids. Most enzymes contain between 100 and 1,000 amino acids. These amino acids are joined together in a long chain, which is folded to produce a unique 3D structure. Different types of enzymes have different shapes and functions because the sequence and type of amino acids in their structure is different.

  5. Enzymes: true or false?

  6. Fussy enzymes? Why are enzymes so specific in their reactions?

  7. Why are enzymes so specific? Enzymes are very specific about which reactions they catalyze. Only molecules with exactly the right shape will bind to the enzyme and react. These are the reactant, or substrate, molecules. The part of the enzyme to which the reactant binds is called the active site. This is a very specific shape and the most important part of the enzyme.

  8. What happens at the active site? + + enzyme enzyme ↔ enzyme–reactant complex ↔ + + reactant products In the same way that a key fits into a lock, so a substrate is thought to fit into an enzyme’s active site. The enzyme is the lock, and the reactant is the key. ↔ ↔

  9. The lock and key model

  10. Why do enzymes speed up reactions? Ea without enzyme Ea with enzyme energy (kJ) reaction (time) Enzymes speed up reactions by lowering the activation energy (Ea) of a reaction. The activation energy is the energy needed to start a reaction. Different reactions have different activation energies.

  11. Factors affecting enzymes The rate of enzyme-catalyzed reactions depends on several factors. What are some of these? Factors that affect the rate of a reaction include: • temperature • substrate concentration • pH • surface area • enzyme concentration • pressure. All enzymes work best at only one particular temperature and pH: this is called the optimum. Different enzymes have different optimum temperatures and pH values.

  12. Factors affecting enzymes heat pH normal denatured If the temperature and pH changes sufficiently beyond an enzyme’s optimum, the shape of the enzyme irreversibly changes. This affects the shape of the active site and means that the enzyme will no longer work. When this happens the enzyme is denatured.

  13. Enzymes and temperature

  14. Temperature and reaction rate As the temperature increases, there are more collisions between enzymes and reactants. This increases the rate of reaction. At a certain point, the temperature gets too high and the enzymes are denatured. The enzymes can no longer bind with reactants. We can work out the Q10 for any reaction over a 10°C interval with the following formula: rate at higher temperature Q10 = rate at lower temperature

  15. Enzyme inhibitors

  16. Identifying enzyme terms

  17. Glossary

  18. Anagrams

  19. Name the structure

  20. Multiple-choice quiz

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