Base Pairing Rules During DNA Synthesis When DNA polymerase encounters guanine (G) on the template (parental) strand, which nucleotide does it add to the growing daughter strand?

Biochemistry DNA Structure and Replication Difficulty: Easy
Choose an option
  • A
    Phosphate
  • B
    Cytosine
  • C
    Uracil
  • D
    Guanine
  • E
    Adenine

Answer

Correct Answer: Cytosine

Explanation

Introduction / Context:High-fidelity DNA replication relies on specific base pairing (Watson–Crick rules). Knowing which nucleotide is incorporated opposite each template base is fundamental to molecular genetics and PCR design.

Given Data / Assumptions:

  • Template base is guanine (G).
  • DNA polymerase synthesizes 5′→3′ by complementarity.
  • Nucleotides are deoxyribonucleotides (no uracil in DNA).

Concept / Approach:According to base-pairing rules, G pairs with C via three hydrogen bonds in B-form DNA. Therefore, the correct incoming deoxyribonucleotide is dCTP, which becomes cytosine (C) in the daughter strand after incorporation and pyrophosphate release.

Step-by-Step Solution:

Step 1: Identify complementary partner of G: C.Step 2: Determine the substrate used by polymerase: dCTP.Step 3: Incorporation yields a phosphodiester bond and adds C opposite template G.

Verification / Alternative check:Melting temperature correlations show G≡C pairs (three H-bonds) contribute greater stability than A=T pairs (two H-bonds), aligning with the rule used here.

Why Other Options Are Wrong:

  • Phosphate is not a nucleotide base.
  • Uracil is in RNA, not DNA.
  • Guanine opposite G would be mismatched.
  • Adenine pairs with thymine, not guanine.

Common Pitfalls:Confusing RNA and DNA bases; forgetting that polymerase requires triphosphate forms (dNTPs) but incorporates the base + sugar + one phosphate into DNA.

Final Answer:Cytosine

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