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9700 · 2.3

Proteins — FAQ

Frequently asked questions for 9700 Proteins. Direct answers first, then deeper explanation — then practise with marking.

What are proteins and why are they important in biology for Cambridge 9700?

Proteins are large, complex macromolecules made from amino acid subunits. They are vital for nearly all biological processes, acting as enzymes, structural components, transporters, and signalling molecules. Understanding their structure and function is crucial for success in Cambridge 9700 Biology, covering topics from cell biology to genetics. Explore our free lessons and past paper guides to master this topic!

How do amino acids link together to form a polypeptide chain?

Amino acids link via a condensation reaction between the carboxyl group of one amino acid and the amino group of another, forming a peptide bond and releasing a water molecule. This process builds the polypeptide chain, which then folds into a functional protein. Practice identifying these bonds and reactions in past paper questions available on our site.

What is the difference between primary and tertiary protein structure?

Primary structure is the linear sequence of amino acids in a polypeptide chain, determined by genetic code. Tertiary structure is the overall three-dimensional shape of a single polypeptide chain, formed by folding of secondary structures and stabilised by interactions between R-groups. The primary structure dictates the tertiary structure. Our premium lessons explain these levels in detail and offer worked examples to solidify your understanding for 9700 exams.

What is the role of the R-group in protein structure?

The R-group (or side chain) is the variable part of an amino acid. Its chemical properties (e.g., polar, non-polar, charged) determine how a polypeptide chain folds. Interactions between R-groups, such as hydrogen bonds, ionic bonds, and disulfide bridges, are responsible for creating the protein's specific tertiary and quaternary structures.