Lesson 2.3.1
2.3.1 Amino acids, polypeptides and protein structure Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 2
20 questions
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Lesson 2.3.1, Amino acids, polypeptides and protein structure: 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
-
What are the three components common to all amino acids?
- A glycerol backbone, a carboxyl group and a long hydrocarbon tail bonded to nitrogen
- An amine group, a carboxyl group and a variable R group, all bonded to a central carbon atom
- A hydroxyl group, a glucose unit and an ester bond bonded to a central carbon atom
- A phosphate group, a pentose sugar and a nitrogenous base bonded to a central carbon
-
How many different standard amino acids are used to build proteins in living organisms?
- 20
- 64
- 61
- 4
-
What type of bond joins two amino acids in a polypeptide chain?
- Glycosidic bond
- Peptide bond
- Phosphodiester bond
- Ester bond
-
Which reaction forms a peptide bond between two amino acids?
- Oxidation, in which hydrogen is removed from each amino acid
- Condensation, in which one molecule of water is removed
- Hydrolysis, in which one molecule of water is added
- Photolysis, in which light energy breaks the amine groups apart
-
A polypeptide is made from 12 amino acids. How many peptide bonds does it contain?
- 10
- 12
- 24
- 11
-
Which level of protein structure is determined by the sequence of amino acids in the chain?
- Tertiary structure
- Quaternary structure
- Primary structure
- Secondary structure
-
Which bonds are involved in holding the secondary structure of a protein, such as an alpha helix, in place?
- Glycosidic bonds between sugar units attached to the backbone
- Hydrogen bonds between the carbonyl and amine groups of the peptide backbone
- Peptide bonds between the R groups of neighbouring amino acids
- Ionic bonds between the carboxyl groups in the middle of the chain
-
Which bond type is a covalent link that can stabilise tertiary structure through two cysteine residues?
- Glycosidic bond
- Hydrogen bond
- Ionic bond
- Disulfide bridge
-
Which interaction between R groups is most likely to be found in the interior of a globular protein?
- Peptide bonds between R groups on the surface
- Hydrophobic interactions between non-polar R groups
- Ionic bonds between charged R groups at the surface
- Hydrogen bonds between the surface R groups and water
-
What is the quaternary structure of a protein?
- The coiling of a polypeptide into an alpha helix stabilised by hydrogen bonds
- The bonding of a polypeptide to a sugar unit to form a glycoprotein
- The arrangement of two or more polypeptide chains into a single functional protein
- The linear sequence of amino acids in a single polypeptide chain
-
Why does changing a single amino acid in a protein's primary structure sometimes change its function?
- It changes the genetic code so that a different gene is expressed in the cell
- It can alter the bonds and folding of the chain, changing the three-dimensional shape and active site
- It changes only the colour of the protein, which has no effect on its function
- It always increases the length of the chain by one amino acid, which then blocks the active site
-
Which feature of a globular protein is most closely linked with its solubility in water?
- Long fibrous chains of collagen that pack together in bundles
- A lack of any charged groups at the surface of the molecule
- Hydrophobic R groups on the outside of the molecule that repel water
- Hydrophilic R groups on the outside of the molecule that interact with water
-
What is the best description of a fibrous protein?
- Short chains of amino acids joined by ester bonds that act as energy stores
- Spherical molecules that are soluble in water and function as enzymes or transporters
- Chains of glucose units joined by glycosidic bonds that are used for structural support
- Long strands of polypeptide that form structural sheets or fibres and are generally insoluble in water
-
Which of these is a globular protein?
- Keratin
- Collagen
- Elastin
- Haemoglobin
-
What is the approximate number of amino acids in a polypeptide that has a mass of 11 000 daltons, if the average amino acid has a mass of 110 daltons?
- 10
- 1100
- 100
- 1000
-
Why is a protein's three-dimensional structure important for its function?
- Its shape determines the genetic code used by the protein to specify amino acids
- Its shape determines only the colour of the protein and does not affect its activity
- Its shape determines the active site or binding site that interacts with specific molecules
- Its shape determines how many amino acids the protein contains, which sets its length
-
Which of these describes the R group of an amino acid?
- The amine group that is used in condensation reactions to release water
- The variable side chain that differs between amino acids and determines their properties
- The carboxyl group that forms the peptide bond with the next amino acid
- The central carbon atom to which all of the other groups are attached
-
A protein has two identical polypeptide chains held together by hydrogen bonds and ionic bonds. Which level of structure does this describe?
- Primary structure
- Secondary structure
- Quaternary structure
- Tertiary structure
-
Which of these interactions is responsible for the coiling of the polypeptide chain into an alpha helix?
- Peptide bonds between the R groups of distant amino acids
- Glycosidic bonds between the amine groups of adjacent amino acids
- Hydrogen bonds between groups on the backbone spaced four residues apart
- Phosphodiester bonds between the carboxyl groups of distant amino acids
-
A student compares a collagen fibre with a haemoglobin molecule. Which statement correctly contrasts their structures?
- Collagen is made of glucose units, whereas haemoglobin is made of fatty acids linked to glycerol
- Collagen is a globular protein that is soluble, whereas haemoglobin is a fibrous protein that is insoluble
- Collagen is a fibrous protein with a repetitive triple helix, whereas haemoglobin is a globular protein with a compact shape
- Collagen and haemoglobin are both fibrous proteins with identical structures and functions
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