Lesson 2.4.2
2.4.2 Mutations and cystic fibrosis Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 2
20 questions
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Lesson 2.4.2, Mutations and cystic fibrosis: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 2: Genes and Health, written with Revision Ninja.
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The 20 questions
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Cystic fibrosis is caused by mutations in the CFTR gene. What does the CFTR protein normally do?
- It forms a structural protein in muscle fibres, which allows the muscle to contract
- It carries haemoglobin in red blood cells, which transports oxygen to the tissues
- It forms a chloride ion channel in cell membranes
- It repairs DNA breaks in dividing cells, which protects the genome from damage
-
Cystic fibrosis is inherited as which type of allele pattern?
- Autosomal dominant
- X-linked dominant
- X-linked recessive
- Autosomal recessive
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The most common CF mutation, deltaF508, is best described as which change?
- Insertion of one base that shifts the reading frame for every later codon
- Deletion of three bases, removing the codon for phenylalanine at position 508
- Duplication of a whole chromosome region including the CFTR gene
- Substitution of a single base that changes a codon into a stop codon
-
Which type of mutation shifts the reading frame for every codon after the change?
- Inversion of a sequence of three bases in place
- Insertion or deletion of a number of bases that is not a multiple of three
- Substitution of a single base within a codon
- Deletion of exactly three consecutive bases
-
What is a silent mutation?
- A change that alters an amino acid and always reduces protein function
- A change that stops translation at the first codon of the gene
- A change that adds three bases to the coding sequence without altering the reading frame
- A change in a codon that still codes for the same amino acid
-
Which of these is a mutagen?
- Sodium chloride in table salt
- Vitamin C in citrus fruit
- Glucose in the blood plasma
- Ionising radiation such as X-rays
-
Which cells must carry a mutation for it to be inherited by offspring?
- Liver cells that carry out detoxification
- Skin cells on the surface of the body
- Gamete-producing cells, which give rise to sperm and egg cells
- Neurons in the brain and spinal cord
-
In healthy airways, what does the CFTR channel help move, and what follows?
- Calcium ions into the cytoplasm, with water leaving through aquaporins to trigger contraction
- Sodium ions into the cell, with water leaving by osmosis to thicken mucus
- Chloride ions out of the cell, with water following by osmosis to keep mucus thin
- Glucose into the cell by facilitated diffusion, with water entering by active transport
-
Two carriers of the CF allele have a child. What is the probability that the child has cystic fibrosis?
- 0%
- 50%
- 75%
- 25%
-
If 1 in 2500 people has cystic fibrosis, what is the approximate frequency of the recessive allele q, under Hardy-Weinberg assumptions?
- 0.04
- 0.25
- 0.0004
- 0.02
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A 3-base deletion occurs inside the coding region of a gene. What is the most likely result?
- Loss of one amino acid, with the sequence on either side of the deletion otherwise unchanged
- Immediate termination of translation at the mutation site
- A frameshift that alters every amino acid downstream of the deletion
- Doubling of the protein length because the reading frame is repeated
-
A substitution changes the codon GAA into GAG. Both code for glutamate. What is the effect on the protein?
- The reading frame shifts by one base for the rest of the gene
- No change to the amino acid sequence
- A new amino acid is inserted at the mutation site
- Translation stops at the mutated codon
-
A substitution converts the tyrosine codon UAU into the stop codon UAA. What is the likely result?
- The protein is made at full length but folds in a different shape only
- Translation terminates early, producing a shortened and usually non-functional protein
- The protein is made with one extra amino acid at the end of the chain
- No change, because UAA still codes for tyrosine in some cells
-
Why are carriers of CF usually free of symptoms?
- The mutant allele is on the X chromosome, so it is not expressed in heterozygotes
- Carriers have two dominant alleles that cancel out the mutant allele
- The mutant allele is deleted from the cells of heterozygous individuals
- One normal CFTR allele produces enough functional channel protein for normal function
-
Which sequence correctly explains how the deltaF508 mutation leads to thick mucus in the lungs?
- Extra CFTR channels open, so mucus takes in too much water and swells until it blocks the airway
- Sodium is pumped out of cells, so mucus becomes acidic and sticky, which damages the airway lining
- Mucus-producing cells divide too quickly, so the secretion accumulates as dense protein deposits
- Misfolded CFTR is degraded, so fewer chloride channels reach the membrane, less water enters the airway surface, and mucus becomes thick
-
A somatic liver cell acquires a mutation during the person's life. Will this mutation be passed to their children?
- Yes, because liver cells can give rise to sperm and egg cells
- No, only mutations in gamete-producing cells are inherited by offspring
- Yes, because every body cell contributes genetic material to the offspring
- Only if the same liver cell mutates a second time before reproduction
-
UV light can damage DNA. What is the characteristic effect of UV light on adjacent thymine bases?
- They convert adenine into guanine in every cell that is exposed
- They only damage DNA outside the nucleus, so the genome is protected
- They can bond to each other, distorting the helix and causing errors during replication
- They split the sugar-phosphate backbone without affecting the bases
-
A 1-base deletion shifts the reading frame, and a stop codon appears five codons later. What is the most likely outcome?
- No protein is made from the gene at all
- A longer protein is produced with the same function as before
- A normal protein is made, because deletions are always repaired
- A truncated, non-functional protein is produced
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Which statement correctly describes a consequence of CF for the digestive system?
- Pancreatic enzymes are over-produced and digest the lining of the gut
- Thick mucus blocks pancreatic ducts
- Excess bile dissolves the mucus in the small intestine, causing diarrhoea
- Mucus blocks the oesophagus, so food cannot be swallowed at all
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What is a point mutation?
- An exchange of genes between two non-homologous chromosomes
- The deletion of an entire gene together with its promoter
- A change in the number of whole chromosomes in a cell
- A change in a single base pair of DNA
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