QUESTION 2: TRUE/FALSE QUESTIONS
[10 MARKS]
Evaluate the statements and select whether the statement is true or false. Write the word 'True'
or 'False' next to the corresponding number on your ANSWER SHEET.
[10]
2.1 Glycogen, starch, and cellulose are all chains of amino acids.
[1]
2.2 A simple sugar that is a building block of carbohydrates is called a polysaccharide.
[1]
2.3 In uncompetitive inhibition, km increases as an inhibitor is added.
[1]
2.4 Two monosaccharide are joined through a peptide bond to form a disaccharide.
[1]
2.5 Amino acid is one of the major macromolecules.
[1]
2.6 The chemical structure of a competitive inhibitor resembles that of the enzymes substrate [1]
2.7 Active transport requires energy and involves the movement of solute from the lower
concentration side of a membrane to the higher concentration side.
[1]
2.8 NADPH is an oxidising agent for fatty acid biosynthesis.
[1]
2.9 The formation of "ketone bodies" occurs when acetyl-CoA from fatty acid metabolism is
unable to enter the citric acid cycle due to a low concentration of oxaloacetate.
[1]
2.10 The enzymes for glycolysis pathway and fatty acid biosynthesis occur in the cytosol.
[1]
SECTION B: SHORT/LONG ANSWER QUESTIONS
[44 MARKS]
Please answer ALL of the questions in this section.
QUESTION 3
[35]
3.1. Write a mechanism for the conversion of pyruvate to acetyl CoA. Assume all of the required
coenzymes are present.
[6]
3.2. Proteins provide many of the structural elements of a cell, and they help to bind cells
together into tissues.
3.2.1. What is protein denaturation?
[1]
3.2.2. Is there any change in the primary structure when a protein is denatured?
[1]
3.2.3. What are some factors that can lead to protein denaturation?
[2]
3.3. Describe allosteric regulation of enzyme activity?
[4]
3.4. Determine the prosthetic group that hemoglobin and myoglobin's oxygen binding ability
depends on?
[1]
3.5. Briefly explain the Cori cycle which is linked metabolic pathways.
[5]
3.6. Define cooperativity to binding oxygen.
[3]
3.7. Define oxidative phosphorylation?
[2]
3.8. List four (4) non covalent interaction in the biomolecules.
[4]
Biochemistry/ introduction to biochemistry (BIO521S/IBC521S)
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l51 Opportunity November 2024