DNA Replication Fundamentals

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DNA Replication Revision Sheet

1. 📌 Essentials

  • DNA replication copies the entire DNA molecule to produce two identical strands.
  • Occurs in the nucleus of eukaryotic cells; cytoplasm of prokaryotes.
  • Key enzymes: helicase, primase, DNA polymerase, ligase.
  • Replication is semi-conservative: each new DNA contains one original.
  • Directionality of synthesis: 5' to 3'.
  • Leading strand: continuous synthesis; lagging strand:azaki fragments.
  • Base pairing rules: A=T, C≡G.
  • Replication begins at specific origins.
  • Forks are Y-shaped structures where DNA unwinding occurs.
  • Proofreading by DNA polymerase ensures fidelity.

2. 🧩 Key Structures & Components

  • DNA molecule — double helix with antiparallel strands.
  • Nucleotides — sugar (deoxyribose), phosphate, nitrogenous base.
  • Base pairs — A=T (2 H-bonds), C≡G (3 H-bonds).
  • Replication fork — site of active DNA unwinding.
  • Origin of replication — specific sequence initiating replication.
  • Enzymes:
    • Helicase — unwinds DNA
    • Primase — synthesizes RNA primer
    • DNA polymerase — adds nucleotides
    • Ligase — joins Okazaki fragments
  • Okazaki fragments — short DNA segments on lagging strand.
  • Single-strand binding proteins — stabilize unwound DNA.

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Anteprima del quiz

1. Which enzyme is responsible for unwinding the DNA double helix during replication?

2. Which enzyme is responsible for unwinding the DNA duplex during replication?

3. What is the primary difference between the leading and lagging strands during DNA replication?

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Anteprima delle flashcard

DNA replication — definition?

Process copying DNA to produce identical molecules

DNA replication — process?

Copies entire DNA into two identical strands.

Leading strand — synthesis?

Synthesized continuously in 5' to 3' direction

Eukaryote vs prokaryote — location?

Eukaryotes in nucleus; prokaryotes in cytoplasm.

Enzyme role?

Helicase unwinds, polymerase synthesizes, ligase joins

Replication fork — role?

Site of DNA unwinding and active replication.

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