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Q.Describe the process of DNA replication.

Odisha ChseOdisha CHSE +2 Science Board Exam 2023Subjective· 7mImportance★★★★★
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DNA replicates semiconservatively (Meselson-Stahl): the two parental strands separate and each templates a new complementary strand, giving two daughter duplexes each with one old and one new strand - synthesis is continuous on the leading strand and discontinuous (Okazaki fragments) on the lagging strand.

1. Semiconservative nature: Watson and Crick's model of the DNA double helix, with its complementary base pairing (A-T, G-C), suggested that each strand could act as a template for synthesizing its complementary strand. Meselson and Stahl (1958) experimentally confirmed, using E. coli grown in ¹⁵N and ¹⁴N media and density-gradient (CsCl) centrifugation, that replication is semiconservative: each of the two daughter DNA molecules retains one parental (old) strand and has one newly synthesized strand.

2. Origin and unwinding: Replication begins at a specific sequence called the origin of replication (ori). The enzyme helicase unwinds and separates the two parental strands by breaking hydrogen bonds, creating a replication fork. Single-strand binding proteins (SSBPs/SSBs) stabilize the separated single strands, and topoisomerase (DNA gyrase) relieves the supercoiling/torsional strain ahead of the fork.

3. Primer synthesis: Since DNA polymerase cannot initiate synthesis de novo, the enzyme primase first synthesizes a short RNA primer complementary to the template, providing a free 3'-OH end.

4. Strand elongation: DNA polymerase III extends the new strand by adding deoxynucleotides (dNTPs) in the 5'→3' direction only, reading the template 3'→5'. Because the two template strands are antiparallel:

  • On the leading strand, synthesis proceeds continuously in the same direction as fork movement.
  • On the lagging strand, synthesis must occur discontinuously, in short stretches called Okazaki fragments, each requiring its own RNA primer. …

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