Unit 4: Continuity and Change

Topic 4.2: Protein Synthesis Questions

Practice 20 exam-style questions for IB Biology Topic 4.2. Review the question stems below, then unlock the full Question Bank to access markschemes, model answers, and AI grading.

1State1 mark
State the name of the enzyme that carries out transcription.
Markscheme and model answer locked
Unlock Question
2State1 mark
State the name of the structure that reads the mRNA codons and joins the amino acids together during translation.
Markscheme and model answer locked
Unlock Question
3Identify1 mark
Which type of bond joins neighbouring amino acids together in a polypeptide?
Markscheme and model answer locked
Unlock Question
4Identify1 mark
What is the role of a tRNA molecule in translation?
Markscheme and model answer locked
Unlock Question
5State1 mark
State what is meant by a codon.
Markscheme and model answer locked
Unlock Question
6Identify1 mark
Which event takes place during translation?
Markscheme and model answer locked
Unlock Question
7Calculate1 mark
2026
Calculate the number of amino acids in the polypeptide it encodes.
Markscheme and model answer locked
Unlock Question
8Identify1 mark
Which enzyme carries out transcription, and what does it produce?
Markscheme and model answer locked
Unlock Question
9Identify1 mark
How many bases of an mRNA molecule are read together as a single codon?
Markscheme and model answer locked
Unlock Question
10Identify1 mark
What does it mean to say that the genetic code is universal?
Markscheme and model answer locked
Unlock Question
11Identify1 mark
During transcription, which base is added to the mRNA opposite an adenine (A) on the DNA template strand?
Markscheme and model answer locked
Unlock Question
12Identify1 mark
Where in the cell does translation take place?
Markscheme and model answer locked
Unlock Question
13Identify1 mark
In which part of a eukaryotic cell does transcription take place?
Markscheme and model answer locked
Unlock Question
14Explain3 marks
A single base in an mRNA codon changes so that UUU becomes UUC. Both UUU and UUC code for phenylalanine. Explain, using the idea of degeneracy, why this change has no effect on the protein produced.
Markscheme and model answer locked
Unlock Question
15Distinguish4 marks
RNA polymerase and DNA polymerase are two enzymes that act on nucleic acids. Distinguish between the roles of RNA polymerase and DNA polymerase, and explain why mRNA is important for making a protein.
Markscheme and model answer locked
Unlock Question
16Deduce3 marks
A section of mRNA has the base sequence AUG–UUU–UCU–UAU. A codon table shows: AUG = methionine (start), UUU = phenylalanine, UCU = serine, UAU = tyrosine. Deduce the order of amino acids in the polypeptide coded by this mRNA, and outline how you used the genetic code to work it out.
Markscheme and model answer locked
Unlock Question
17Determine1 mark
A drug (rifampicin) inhibits transcription by blocking RNA polymerase. What is the immediate effect on the cell?
Markscheme and model answer locked
Unlock Question
18Identify1 mark
Which statement correctly describes the role of mRNA in protein synthesis?
Markscheme and model answer locked
Unlock Question
19Deduce1 mark
A codon table shows UCU = serine, UAU = tyrosine and CAU = histidine. Which order of amino acids does the mRNA sequence UCU–UAU–CAU code for?
Markscheme and model answer locked
Unlock Question
20Identify1 mark
Which statement correctly describes what it means for the genetic code to be degenerate (redundant)?
Markscheme and model answer locked
Unlock Question

Ready to practice Topic 4.2?

Get instant AI feedback on your answers, view detailed markschemes, and track your progress across all IB Biology topics.