8876 / 2027

Lesson 3 of 7 / Biomolecules: structure explains function

One glycerol, two different lipid designs

Why does a phospholipid form a bilayer?

In this lesson: Describe glycerol, fatty acids, ester bonds, triglycerides and phospholipids in relation to their roles.

About 6 min

The key ideaA triglyceride has three fatty acids joined to glycerol. A phospholipid has two fatty-acid tails and a phosphate-containing head, giving it both hydrophobic and hydrophilic regions.

Explore the idea

Compare a store with a membrane unit

GlycerolFatty-acid tails

Three ester links join three fatty acids to glycerol. Forming all three releases three water molecules.

Coloured links represent ester bonds, not additional atoms. The phosphate-containing head is simplified; lipid molecules are not polymers of repeated monomers.

Explanation

Glycerol is a small three-carbon molecule with three hydroxyl groups. A fatty acid has a carboxyl group and a hydrocarbon chain. The chain is largely non-polar and hydrophobic. Saturated chains have no carbon-carbon double bonds; unsaturated chains contain one or more, often producing bends.

An ester bond forms by condensation between a glycerol hydroxyl group and a fatty-acid carboxyl group. Forming a triglyceride joins three fatty acids to one glycerol and releases three water molecules. Hydrolysis of the three ester bonds uses water to release the components.

Triglycerides are hydrophobic and insoluble in water. Their many carbon-hydrogen bonds provide a concentrated energy store when oxidised, and storage without much associated water makes them compact. Stored fat can also provide insulation and cushioning.

A phospholipid has two fatty-acid tails and a phosphate-containing polar head attached to glycerol. In water, the hydrophilic heads face water while hydrophobic tails avoid it. This amphipathic structure favours bilayers, making phospholipids suitable for cell membranes. A triglyceride does not have this head-and-two-tail arrangement.

Step by step
  1. 1

    Count the fatty acids

    Three in a triglyceride; two in the phospholipid model.

  2. 2

    Identify the bond

    Ester links connect fatty acids to glycerol.

  3. 3

    Locate the polar region

    The phospholipid head interacts with water; its tails occupy the bilayer interior.

Worked example

Three ester bonds

How many water molecules are used to hydrolyse one triglyceride fully into glycerol and fatty acids?

One way to explain it

Three water molecules, one for each ester bond broken. The products are one glycerol molecule and three fatty-acid molecules.

Why this answer works
  • Count the bonds being broken.
  • Apply one hydrolysis event to each ester bond.
Is this true? "A phospholipid is a triglyceride with an extra phosphate added as a fourth tail."

In the standard model, a phosphate-containing head replaces one fatty-acid position, leaving two hydrophobic tails.

Try a question

What makes a phospholipid suited to a membrane bilayer?
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