OpenRevise

Biology · Digestion and Enzymes

Viewing as

Teacher view: every answer and mark scheme set out in full.

Digestive Enzymes and Bile

Starch, protein and fat each need a different enzyme. This lesson names the digestive enzymes, says where they are made and what they produce, and explains the part played by bile, which is not an enzyme but makes fat digestion faster.

  • 11 key terms
  • All boards

Learning Objectives

  1. 1Name the three groups of digestive enzymes and the large molecules each one breaks down.
  2. 2Name the small molecules made when carbohydrates, proteins and lipids are digested.
  3. 3State where amylase, protease and lipase are made.
  4. 4Explain how bile neutralises stomach acid and emulsifies fat, and why this speeds up digestion.
  5. 5Explain what the products of digestion are used for.

Retrieval practice

  1. 1

    What is an enzyme?

    Show answerHide answer

    A biological catalyst, made of protein, that speeds up a reaction.

  2. 2

    Why is an enzyme specific?

    Show answerHide answer

    The shape of its active site fits only one substrate.

  3. 3

    What happens to an enzyme at a very high temperature?

    Show answerHide answer

    It is denatured: its shape, including the active site, changes.

  4. 4

    Which organ makes bile?

    Show answerHide answer

    The liver.

Three jobs, three kinds of enzyme

The food you eat contains three main kinds of large molecule: carbohydrates (mostly starch), proteins and lipids (fats and oils). Because enzymes are specific, no single enzyme can digest all three. The body makes a different enzyme for each, and all of them work outside the cells, in the gut. Digestive enzymes are made in glands and in the lining of the gut, and they are released into the food as it passes by. The result is a mixture of small, soluble molecules that can be absorbed into the blood.

The digestive enzymes and what they make

Digestive enzymes are named after the type of molecule they break down.

  • Carbohydrases

    Break down carbohydrates into simple sugars. Amylase is a carbohydrase that breaks starch down into simple sugars, such as glucose.

  • Proteases

    Break down proteins into amino acids.

  • Lipases

    Break down lipids (fats and oils) into glycerol and fatty acids.

  • Why break them down

    The products are small and soluble, so they can pass through the wall of the small intestine into the blood. The large molecules cannot.

Where the enzymes are made

The enzymes are made in different places, and many of them are made in more than one.

  • Amylase

    Made in the salivary glands, the pancreas and the small intestine.

  • Protease

    Made in the stomach, the pancreas and the small intestine.

  • Lipase

    Made in the pancreas and the small intestine.

  • The pancreas

    Makes all three kinds of enzyme and releases them into the small intestine.

  • Where they work

    Amylase begins digesting starch in the mouth. Protease begins digesting protein in the stomach. All three are active in the small intestine, where digestion is completed.

Bile and fat digestion

Bile is a fluid that helps digest fat, but it is not an enzyme and it does not break down molecules. It does two things.

  • Where it comes from

    Bile is made in the liver, stored in the gall bladder and released into the small intestine.

  • It is alkaline

    The food that leaves the stomach is acidic, because of the hydrochloric acid. This acid would stop the enzymes in the small intestine from working. Bile neutralises the acid and makes the conditions slightly alkaline, which suits these enzymes.

  • It emulsifies fat

    Bile breaks large drops of fat into many tiny droplets. This is called emulsification.

  • A larger surface area

    Many small droplets have a much bigger total surface area than one large drop. Lipase can only work on the surface of the fat, so with more surface it digests the fat faster.

Why smaller droplets mean a bigger surface area

A cube of fat has sides of 2 cm. Bile splits it into eight cubes, each with sides of 1 cm. Compare the total surface area before and after.

Show the solutionHide the solution
  1. 1 One 2 cm cube Surface area = 6 faces × (2 × 2) = 24 cm².
  2. 2 Eight 1 cm cubes Each has an area of 6 × (1 × 1) = 6 cm², so the total is 8 × 6 = 48 cm².
  3. 3 Compare 48 ÷ 24 = 2. The total volume is still 8 cm³, but there is twice the surface area for lipase to work on.

AnswerThe surface area doubles, from 24 cm² to 48 cm², even though the volume is the same.

Digestive enzymes and bile

Digestive enzymes

  • Made by glands and by the lining of the gut
  • Are catalysts that break down large molecules chemically
  • Specific: each one works on one type of molecule
  • Work best at their optimum pH

Bile

  • Made in the liver and stored in the gall bladder
  • Is not an enzyme, and does not break down molecules
  • Alkaline, so it neutralises the acid from the stomach
  • Emulsifies fat, giving lipase a bigger surface area

What the products are used for

The soluble products pass into the blood. The blood takes them to cells all over the body, where they have two main uses.

  • Building new molecules

    Cells use simple sugars to build new carbohydrates, fatty acids and glycerol to build new lipids, and amino acids to build new proteins.

  • Respiration

    Some of the glucose is used in respiration, to release energy.

  • Why so much digesting

    The molecules in your food are not the molecules that your body needs. Digestion breaks down the food so that your cells can use the parts to build what they need.

Case study

Lactose-free milk

Milk contains a sugar called lactose, which has to be digested by the enzyme lactase, a carbohydrase. Some people make too little lactase, so the lactose stays in the gut and causes pain and discomfort. In lactose-free milk, the lactase has already been added, so the lactose is broken down into simple sugars before the milk is drunk. It shows that an enzyme is specific: lactase works only on lactose, not on any other sugar.

Lactase A carbohydrase
Lactose Broken down into glucose and galactose

The three digestive enzymes to learn

Carbohydrases break down carbohydrates into simple sugars, proteases break down proteins into amino acids, and lipases break down lipids into glycerol and fatty acids.

Bile is not an enzyme. It neutralises acid and emulsifies fat.

Digestive enzymes

Digestive enzymes

  • Carbohydrase

    • starch to simple sugars: amylase
  • Protease

    • protein to amino acids
  • Lipase

    • lipid to glycerol and fatty acids
  • Bile

    • made in the liver
    • stored in the gall bladder
    • alkaline
    • emulsifies fat
  • Products

    • used to build new molecules
    • and glucose for respiration

Summary and exam focus

  • Carbohydrases break down carbohydrates (such as starch) into simple sugars. Amylase is a carbohydrase.
  • Proteases break down proteins into amino acids.
  • Lipases break down lipids into glycerol and fatty acids.
  • Amylase is made in the salivary glands, pancreas and small intestine. Protease is made in the stomach, pancreas and small intestine. Lipase is made in the pancreas and small intestine.
  • Bile is made in the liver and stored in the gall bladder. It is alkaline, and it emulsifies fat.
  • The products are used to build new carbohydrates, lipids and proteins, and some glucose is used in respiration.

Exam focus

Explain the role of bile in the digestion of fat. (4 marks) (4 marks)

Give both jobs of bile, and for each say why it matters. Bile is alkaline, so it neutralises the stomach acid and gives the right pH for the enzymes. It also emulsifies fat into small droplets, which gives lipase a larger surface area.

Key terms

The words this lesson expects you to use. Each one is linked from the first place it appears above.

Carbohydrase
An enzyme that breaks down carbohydrates into simple sugars.
Amylase
A carbohydrase that breaks down starch into simple sugars.
Protease
An enzyme that breaks down proteins into amino acids.
Lipase
An enzyme that breaks down lipids into glycerol and fatty acids.
Simple sugars
The small, soluble molecules that carbohydrates are broken down into, such as glucose.
Amino acids
The small molecules that proteins are broken down into.
Fatty acids and glycerol
The small molecules that lipids are broken down into.
Bile
An alkaline fluid, made in the liver, that neutralises acid and emulsifies fat.
Emulsify
To break large drops of fat into many tiny droplets.
Neutralise
To remove the acidity of a solution by adding an alkali.
Surface area
The total area of the outside of an object. A larger surface area means more space for reactions.

Questions and answers

19 questions set on this lesson, with the mark schemes and model answers open.

1. Exam question Name 1 mark Easier

Name the enzyme that breaks down starch into simple sugars.

Mark scheme — 1 mark available

  • Amylase — 1 mark

Model answer

Amylase.

2. Exam question Name 3 marks Easier

Name the small molecules produced by the digestion of (a) protein, (b) fat and (c) starch.

Mark scheme — 3 marks available

  • (a) Amino acids — 1 mark
  • (b) Fatty acids and glycerol — 1 mark
  • (c) Simple sugars / glucose — 1 mark

Model answer

(a) Amino acids. (b) Fatty acids and glycerol. (c) Simple sugars, such as glucose.

3. Exam question State 3 marks Easier

Amylase is made in three places in the body. Name the three places.

Mark scheme — 3 marks available

  • Salivary glands — 1 mark
  • Pancreas — 1 mark
  • Small intestine — 1 mark

Model answer

The salivary glands, the pancreas and the small intestine.

4. Exam question Explain 3 marks Easier

Figure 1 shows three large food molecules being broken into smaller molecules by enzymes. (a) State what the enzymes do to the large molecules. (b) Explain why the small molecules can be absorbed but the large molecules cannot.

Three large molecules being broken into small molecules, with no labels.

Mark scheme — 3 marks available

  • (a) Break down large molecules into small ones — 1 mark
  • (b) Small molecules are soluble and can pass through the gut wall — 1 mark
  • Large molecules are too big to pass through — 1 mark

Model answer

(a) They break the large molecules down into small molecules. (b) The small molecules are soluble and small enough to pass through the wall of the small intestine into the blood. The large molecules are too big to pass through.

5. Exam question Explain 2 marks Easier

Explain why the body needs different enzymes to digest starch, protein and fat.

Mark scheme — 2 marks available

  • Enzymes are specific / the active site fits one type of substrate — 1 mark
  • Starch, protein and fat have different shapes — 1 mark

Model answer

Each enzyme is specific. The active site of an enzyme has a shape that fits only one type of molecule, and starch, protein and fat have different shapes.

6. Exam question Describe 2 marks Easier

Describe where bile is made and where it is stored.

Mark scheme — 2 marks available

  • Made in the liver — 1 mark
  • Stored in the gall bladder — 1 mark

Model answer

It is made in the liver and stored in the gall bladder.

7. Exam question Explain 4 marks Easier

Explain the role of bile in the digestion of fat.

Mark scheme — 4 marks available

  • Bile is alkaline / neutralises stomach acid — 1 mark
  • Gives the right pH for the enzymes — 1 mark
  • Emulsifies fat into small droplets — 1 mark
  • Larger surface area, so lipase works faster — 1 mark

Model answer

Bile is alkaline, so it neutralises the acid from the stomach. This gives the right pH for the enzymes in the small intestine to work. Bile also emulsifies the fat into small droplets. This increases the surface area, so lipase can digest the fat faster.

8. Exam question Calculate 3 marks Easier

A cube of fat has sides of 3 cm. It is emulsified into 27 cubes with sides of 1 cm. Calculate the total surface area of the fat before and after emulsification, and say how many times bigger it became.

Mark scheme — 3 marks available

  • 54 cm² before — 1 mark
  • 162 cm² after — 1 mark
  • 3 times bigger — 1 mark

Model answer

Before: 6 × 3 × 3 = 54 cm². After: each small cube has 6 × 1 × 1 = 6 cm², so 27 × 6 = 162 cm². 162 ÷ 54 = 3, so the surface area became 3 times bigger.

9. Exam question Describe 6 marks Core

A student eats a cheese sandwich, which contains starch, protein and fat. Describe how each of these is digested. Name the enzyme and the products in each case.

What the examiner wants: Take the three food groups in turn. For each, give the enzyme and the small molecules it makes.

Mark scheme — 6 marks available

  • Starch digested by amylase — 1 mark
  • To simple sugars / glucose — 1 mark
  • Protein digested by protease — 1 mark
  • To amino acids — 1 mark
  • Fat digested by lipase — 1 mark
  • To glycerol and fatty acids — 1 mark

Model answer

The starch is digested by amylase, which breaks it down into simple sugars such as glucose. The protein is digested by protease, which breaks it down into amino acids. The fat is digested by lipase, which breaks it down into glycerol and fatty acids.

10. Multiple choice 1 mark Core

Which enzyme breaks down fat?

  1. A Amylase
  2. B Lipase Correct
  3. C Protease
  4. D Carbohydrase

Why: Lipase breaks down lipids (fats and oils) into glycerol and fatty acids.

11. Multiple choice 1 mark Core

Which enzyme breaks down protein into amino acids?

  1. A Amylase
  2. B Lipase
  3. C Bile
  4. D Protease Correct

Why: Proteases break down proteins into amino acids.

12. Multiple choice 1 mark Core

Starch is digested into which product?

  1. A Simple sugars Correct
  2. B Amino acids
  3. C Fatty acids
  4. D Glycerol

Why: Starch is a carbohydrate and is broken down into simple sugars by amylase.

13. Multiple choice 1 mark Core

Which organs make lipase?

  1. A The salivary glands and the stomach
  2. B The liver and the gall bladder
  3. C The pancreas and the small intestine Correct
  4. D The stomach and the oesophagus

Why: Lipase is made in the pancreas and the small intestine.

14. Multiple choice 1 mark Core

Where is protease made?

  1. A The salivary glands
  2. B The stomach Correct
  3. C The liver
  4. D The large intestine

Why: Protease is made in the stomach, the pancreas and the small intestine.

15. Multiple choice 1 mark Core

What is bile?

  1. A An enzyme that breaks down fat
  2. B An acid made in the stomach
  3. C A type of lipid
  4. D An alkaline fluid that helps to digest fat Correct

Why: Bile is an alkaline fluid made in the liver. It is not an enzyme.

16. Multiple choice 1 mark Core

Why must bile be alkaline?

  1. A To neutralise the acid that comes from the stomach Correct
  2. B To make the food acidic
  3. C To digest protein
  4. D To kill the enzymes

Why: The food from the stomach is acidic. Bile neutralises the acid, so the enzymes in the small intestine work properly.

17. Multiple choice 1 mark Core

How does emulsification make fat digestion faster?

  1. A It makes the fat acidic
  2. B It adds more lipase
  3. C It increases the surface area of the fat Correct
  4. D It cools the fat down

Why: Breaking the fat into small droplets increases its surface area, so lipase has more surface to work on.

18. Multiple choice 1 mark Core

A cube of fat is cut into eight smaller cubes. What happens to the total surface area?

  1. A It decreases
  2. B It increases Correct
  3. C It stays the same
  4. D It becomes zero

Why: Cutting a cube into smaller cubes increases the total surface area, and the volume stays the same.

19. Multiple choice 1 mark Stretch

A student says that bile digests fat because it is an enzyme. What is wrong with this?

  1. A Nothing, it is correct
  2. B Bile digests protein, not fat
  3. C Bile is made in the stomach
  4. D Bile is not an enzyme: it emulsifies the fat so lipase can digest it faster Correct

Why: Bile is not an enzyme. It emulsifies fat to give a larger surface area, and the digesting is done by lipase.