IB Biology HL Carbohydrates & Lipids Paper 1 & 2 ~11 min read

Macromolecules

Biology builds almost everything the same way: take a small unit, join thousands of them with one reaction, and take them apart again with the reverse. Learn that pair of reactions once and it covers carbohydrates, proteins and nucleic acids.

📚 What you need to know

Monomers, polymers and macromolecules

Carbon compounds can be large molecules made from many small, repeating subunits.

Macromolecules are simply very large molecules. They contain 1000 or more atoms and so have a high molecular mass.

The distinction examiners test. Polymers can be macromolecules, but not all macromolecules are polymers. A polymer must consist of many repeating subunits. Lipids are macromolecules but not polymers, because they are not built from repeating monomers.
MacromoleculeMonomer or subunits
Carbohydrates (polysaccharides)Monosaccharides
LipidsFatty acids, glycerol, phosphate groups
Proteins (polypeptides)Amino acids
Nucleic acidsNucleotides
Notice the lipid row is the odd one out: it lists subunits, not one repeating monomer. A triglyceride is glycerol plus three fatty acids and then it stops — there is no chain to extend. That is exactly why lipids are not polymers.

Condensation and hydrolysis

Macromolecules are formed during condensation reactions. Molecules combine together, covalent bonds form, and the result is a polymer or macromolecule. Water is removed as part of the reaction.

The reverse reaction is hydrolysis — from hydro (water) and lyse (to break). Covalent bonds are broken when water is added, and the –O and –OH from the water molecule are used to form the functional groups of the products. This is what happens in digestion, when macromolecules need to be broken down into their monomers.

One reaction, and its exact reverse join with water out, split with water in CONDENSATION HYDROLYSIS—OH HO— —OH HO—water out water incovalent bond formed covalent bond brokenEvery polymer in biology is built by condensation and taken apart by hydrolysis. One water leaves for every bond made, and one is used up for every bond broken.
Count bonds and you can count waters. A triglyceride has three ester bonds, so making one releases exactly three water molecules.

The four named bonds

Four monomers, four bond names name the monomers and you can name the bond GLYCOSIDIC BOND monosaccharide + monosaccharide found in disaccharides and polysaccharidesPEPTIDE BOND amino acid + amino acid found in polypeptides and proteinsPHOSPHODIESTER BOND nucleotide + nucleotide found in DNA and RNAESTER BOND glycerol + fatty acid found in triglycerides and phospholipidsAll four are covalent bonds made by the same reaction: condensation. So all four are broken by the same reaction too: hydrolysis.
Only the names change. If you can spot the monomers in an unfamiliar diagram, you can name the bond without recognising the molecule.

Where each bond forms

Hydrolysis in digestion

Bond hydrolysedInProducts
GlycosidicDisaccharides and polysaccharidesMonosaccharides
PeptidePolypeptidesAmino acids
EsterTriglyceridesThree fatty acids and glycerol

Worked examples

WE 1

Polymer or not?

Explain why a triglyceride is described as a macromolecule but not as a polymer. (2 marks)

Point 1: why macromolecule It is a very large molecule containing a large number of atoms, giving it a high molecular mass. Point 2: why not a polymer A polymer must be made of many repeating monomers joined in a chain. A triglyceride is glycerol plus three fatty acids, which are not repeating subunits. Big, but not built from a repeating unit this exact distinction is a favourite one-mark trap
WE 2

Counting water molecules

A polypeptide is made from 120 amino acids. Deduce how many water molecules were released during its formation, and explain your answer. (2 marks)

Step 1: count the bonds 120 amino acids joined in a chain need 120 − 1 = 119 peptide bonds. Step 2: link bonds to water Each peptide bond is formed by a condensation reaction, and one water molecule is released per bond. 119 water molecules the classic error is answering 120 — there is always one fewer bond than monomers in a chain
WE 3

Describing hydrolysis

Describe what happens during the hydrolysis of a disaccharide. (3 marks)

Point 1: what is added A molecule of water is added to the disaccharide. Point 2: what breaks The covalent glycosidic bond between the two monosaccharides is broken. Point 3: the products The –O and –OH from the water form the functional groups of the two monosaccharides produced. Water in, glycosidic bond out, two monosaccharides naming the bond is usually worth its own mark

💡 Exam tips

⚠ Common mistakes

Up next: Carbohydrates: Function & Examples — monosaccharides, the two isomers of glucose, and why starch, glycogen and cellulose behave so differently.

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