B1: Biological Molecules and Enzyme Kinetics
Carbohydrates, lipids, proteins, nucleic acids, ATP, enzyme kinetics, competitive and non-competitive inhibition.
Carbohydrates, lipids, proteins, nucleic acids, ATP, enzyme kinetics, competitive and non-competitive inhibition.
Question:
Explain how glycogen structure relates to its storage function in animal liver and muscle cells.
Model Solution & Mark Scheme:
1. Ξ±-glucose polymer: easily hydrolysed to release glucose for respiration. 2. Highly branched (1,6-glycosidic bonds): multiple terminal ends for rapid simultaneous enzymatic cleavage. 3. Insoluble: does not alter cellular osmotic potential. 4. Compact helical structure: maximizes energy storage density.
Q1: Describe the non-reducing sugar biochemical test.
Answer: Boil sample with dilute HCl to hydrolyse glycosidic bonds, neutralise with NaHCOβ, re-test with Benedict's reagent; brick-red precipitate indicates positive result.
Q2: Contrast competitive and non-competitive enzyme inhibitors.
Answer: Competitive bind active site reversibly (overcome by high [S]); non-competitive bind allosteric site altering 3D conformation (lowers V_max).