Question:

Match the standard/stated cofactors in Column I with their respective enzymes in Column II 

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Remember cofactors: Cu$^{2+}$ → Cytochrome oxidase, Se → Glutathione peroxidase, Ni$^{2+}$ → Urease, K$^{+}$ → Pyruvate kinase, Mo → Nitrogenase. These are classical exam favorites in biochemistry.
Updated On: Sep 3, 2025
  • P – (v); Q – (ii); R – (iv); S – (i); T – (iii)
  • P – (ii); Q – (iv); R – (v); S – (iii); T – (i)
  • P – (iv); Q – (ii); R – (iii); S – (i); T – (v)
  • P – (ii); Q – (i); R – (iii); S – (iv); T – (v)
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The Correct Option is B

Solution and Explanation

Step 1: Cu2+ (Copper)
Copper ions are essential cofactors of cytochrome oxidase (Complex IV of mitochondrial ETC), where Cu centers participate in electron transfer and O2 reduction.
⇒ P – (ii).

Step 2: Se (Selenium)
Selenium is present as selenocysteine in glutathione peroxidase, an antioxidant enzyme reducing peroxides.
⇒ Q – (iv).

Step 3: Ni2+ (Nickel)
Nickel is a structural and catalytic cofactor for urease, which hydrolyzes urea into ammonia and CO2.
⇒ R – (v).

Step 4: K+ (Potassium)
Potassium ions are important cofactors in glycolytic enzymes such as pyruvate kinase, stabilizing negative charges on phosphates.
⇒ S – (iii).

Step 5: Mo (Molybdenum)
Molybdenum is a cofactor for dinitrogenase (nitrogenase complex) in nitrogen-fixing bacteria, enabling N2 reduction to NH3.
⇒ T – (i).

Therefore, the correct matching is:
P – (ii), Q – (iv), R – (v), S – (iii), T – (i).
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