Q.Explain the process of DNA replication.
DNA replication is the semiconservative process by which a DNA molecule makes an identical copy of itself, using each parental strand as a template for a new complementary strand.
Step 1. Activation of nucleotides: The four deoxyribonucleotides (dAMP, dGMP, dCMP, dTMP) present in the nucleoplasm are converted to their triphosphate forms (dATP, dGTP, dCTP, dTTP) using ATP and the enzyme phosphorylase.
Step 2. Initiation at the origin: Replication begins at a specific origin point 'O'; endonuclease nicks one strand of the DNA at this point, in a stretch called a replicon.
Step 3. Unwinding: DNA helicase breaks the hydrogen bonds near the origin, separating the two strands bidirectionally to form a Y-shaped replication fork; single-strand binding proteins (SSBPs) coat the separated strands to prevent them from re-annealing.
Step 4. Synthesis of new strands: A short RNA primer binds the 3' end of each template strand, and DNA polymerase then extends it, adding nucleotides complementary to the template (A with T, G with C) and always in the 5' to 3' direction.
Step 5. Leading and lagging strands: Because the two template strands are antiparallel and DNA polymerase works only 5' to 3', one new strand (the leading strand) is synthesised continuously toward the fork, while the other (the lagging strand) is synthesised discontinuously, away from the fork, as short Okazaki fragments, each requiring its own RNA primer.
Step 6. Maturation: RNA primers are removed and replaced with DNA (by DNA polymerase I in prokaryotes, DNA polymerase-alpha-associated activity in eukaryotes), and DNA ligase seals the Okazaki fragments into a continuous strand; DNA gyrase/topoisomerase then restores the double-helical, supercoiled state.
Step 7. Result: Two daughter DNA molecules are formed, each containing one original (parental) strand and one newly synthesised strand -- the semiconservative mode of replication, experimentally confirmed by Meselson and Stahl's 1958 15N/14N density-gradient centrifugation experiment.
DNA replication proceeds through nucleotide activation, origin recognition and strand unwinding (helicase + SSB proteins), primer-initiated 5' to 3' synthesis of new strands by DNA polymerase (continuous leading strand, discontinuous Okazaki-fragment lagging strand joined by ligase), and helix restoration by DNA gyrase -- yielding two semiconservatively replicated daughter DNA molecules.
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