Lesson 3.1.6.1
3.1.6.1 ATP structure, hydrolysis and synthesis Quiz: AQA Biology, Unit 1
20 questions
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Lesson 3.1.6.1, ATP structure, hydrolysis and synthesis: 20 multiple choice questions for the AQA Biology (7402), Unit 1: Biological molecules, written with Revision Ninja.
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The 20 questions
-
Which three components make up a molecule of ATP?
- Glucose, uracil and one phosphate group
- Ribose, adenine and three phosphate groups
- Deoxyribose, guanine and two phosphate groups
- Ribose, cytosine and two phosphate groups
-
Which enzyme catalyses the hydrolysis of ATP to ADP and inorganic phosphate?
- DNA polymerase
- DNA helicase
- ATP synthase
- ATP hydrolase
-
Which enzyme resynthesises ATP from ADP and inorganic phosphate during respiration or photosynthesis?
- ATP hydrolase
- DNA polymerase
- Amylase
- ATP synthase
-
What are the products of the hydrolysis of ATP?
- ADP and inorganic phosphate
- ADP and glucose
- AMP and two inorganic phosphates
- Adenine and three phosphate groups
-
Why is ATP described as a suitable energy currency for cells?
- It contains a double bond in each phosphate group that releases heat when the molecule is used with no exceptions
- It releases a usable amount of energy in one step, and it is rapidly regenerated from ADP and Pi
- It is made from lipids, so it can cross the cell-surface membrane easily by simple diffusion
- It stores large amounts of energy for long periods of time in the cytoplasm of the cell
-
What is phosphorylation in the context of ATP?
- The formation of a glycosidic bond between two monosaccharide units by a condensation reaction
- The removal of a phosphate group from a DNA nucleotide so that the molecule can be converted into RNA
- The transfer of an inorganic phosphate group to another compound, often making it more reactive
- The breakdown of a phospholipid into glycerol and fatty acids by the action of hydrolytic enzymes
-
Which sugar forms part of ATP's structure?
- Deoxyribose
- Ribose
- Glucose
- Galactose
-
How many water molecules are used in the hydrolysis of one molecule of ATP to ADP and Pi?
- 0
- 3
- 2
- 1
-
The molar mass of ATP is 507 g/mol and that of ADP is 427 g/mol. Water (18 g/mol) is used in the hydrolysis. What is the molar mass of inorganic phosphate formed?
- 80 g/mol
- 116 g/mol
- 525 g/mol
- 98 g/mol
-
A muscle cell rapidly contracts and uses ATP. Which process resynthesises the ATP that is hydrolysed?
- DNA helicase separating the two strands of DNA in the nucleus so that the genes can be read
- Benedict's solution identifying the presence of glucose in the cell so that the sugar can be used
- ATP synthase catalysing condensation of ADP and Pi, powered by respiration
- ATP hydrolase catalysing the breakdown of ATP into ADP and inorganic phosphate in the muscle cell
-
Active transport moves ions against a concentration gradient. How is ATP used in this process?
- It forms a peptide bond with the ion, which crosses the membrane
- It acts as the carrier protein, binding to the ions and moving them across
- It is converted to glucose, which then diffuses through the membrane
- Its hydrolysis is coupled to the carrier protein, releasing energy that drives the movement
-
Glucose is phosphorylated during the early stages of respiration. What is the purpose of this phosphorylation?
- It uses an inorganic phosphate from ATP to make glucose more reactive so that it can be broken down
- It forms a glycosidic bond that joins two glucose molecules together into a disaccharide molecule with no exceptions
- It converts the glucose into starch, which can then be stored more efficiently inside the cell
- It removes oxygen from the glucose so that the sugar can be stored in the cell for later use
-
Why are cells able to keep only a small amount of ATP at any one time?
- ATP is too large to be stored inside the cytoplasm of most cells
- ATP can only be made from glucose, which cells lack in large amounts
- ATP is continuously hydrolysed and resynthesised, so a small pool turns over rapidly
- ATP is toxic in large amounts, so cells must destroy the excess immediately
-
Which type of reaction forms ATP from ADP and inorganic phosphate?
- Oxidation
- Condensation
- Reduction
- Hydrolysis
-
A student claims that ATP is the best long-term energy store in the body. Which evaluation is correct?
- Correct, because ATP contains more energy per gram than any other molecule found in living organisms
- Correct, because ATP is stable at all temperatures and so does not need to be regenerated in the cell
- Incorrect, because ATP is not a nucleotide derivative and therefore cannot store any energy at all
- Incorrect, because ATP is only a short-term energy carrier, while fats and glycogen store energy for longer periods
-
Explain why ATP hydrolysis releases energy, in terms of the phosphate groups.
- The phosphate groups are non-polar, so they release heat when they separate from the ribose sugar in the molecule in every case
- The ribose sugar is oxidised during hydrolysis, so the energy stored in its carbon bonds is released
- The hydrolysis of ATP forms a new covalent bond between the phosphate groups, which releases energy as heat
- The negatively charged phosphate groups are crowded together, and the products are more stable, so energy is released
-
Explain why ATP is described as a nucleotide derivative and how it differs from a DNA nucleotide.
- ATP contains deoxyribose and uracil in its structure, whereas a DNA nucleotide contains ribose and thymine instead in every case
- ATP is a polymer of nucleotides joined together in a chain, whereas a DNA nucleotide is a single sugar unit only
- ATP has ribose, adenine and three phosphates, whereas a DNA nucleotide has one phosphate and polymerises into a chain
- ATP contains amino acids and is therefore a protein, whereas a DNA nucleotide contains no nitrogen atoms at all
-
A cell hydrolyses ATP at a rate of 2 mol per second for 30 seconds. How many moles of water are used?
- 60 mol
- 2 mol
- 30 mol
- 120 mol
-
What is the ratio of phosphate groups in ATP to phosphate groups in ADP?
- 3:1
- 3:2
- 1:1
- 2:3
-
Explain how ATP links the energy-releasing reactions of respiration to energy-requiring reactions in the cell.
- Energy from respiration resynthesises ATP from ADP and Pi, and hydrolysis of ATP then supplies energy to energy-requiring reactions
- Respiration uses ATP as a substrate, so energy-requiring reactions must wait until respiration has finished
- ATP is produced only by photosynthesis, so respiration cannot supply energy to any of the reactions in the cell
- Energy from respiration is stored as ATP, which is then converted into lipid for long-term storage in the cell
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