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Q.Describe the structure of DNA molecule as per the model proposed by Watson and Crick.

Odisha ChseOdisha CHSE +2 Science Board Exam 2019Subjective· 7mImportance★★★★★
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Figure — The stem asks to describe the Watson-Crick DNA structure (double helix, antiparallel strands, sugar-phosphate
Figure — The stem asks to describe the Watson-Crick DNA structure (double helix, antiparallel strands, sugar-phosphate

The Watson-Crick model (1953) describes DNA as a right-handed double helix made of two antiparallel polynucleotide strands, coiled around a common axis, held together by base-pairing (A=T, G≡C) and stabilised by hydrogen bonds and base stacking.

James Watson and Francis Crick, using X-ray diffraction data from Rosalind Franklin and Maurice Wilkins along with Chargaff's rules, proposed the double helix model of DNA structure in 1953. Its key features are:

1. Two polynucleotide chains

DNA consists of two long polynucleotide strands. Each strand is a polymer of nucleotides, and each nucleotide has three components: a nitrogenous base (adenine, guanine - purines; cytosine, thymine - pyrimidines), a pentose sugar (deoxyribose), and a phosphate group. Adjacent nucleotides within a strand are joined by 3'-5' phosphodiester bonds, forming the sugar-phosphate backbone.

2. Antiparallel orientation

The two strands run in opposite polarity - one strand runs 5'→3' while the complementary strand runs 3'→5'. This antiparallel arrangement is essential for correct base pairing and for the mechanism of replication.

3. Double helix, right-handed

The two strands are coiled around a common axis in a right-handed helix, forming a structure like a twisted ladder. The sugar-phosphate backbones form the two rails of the ladder (on the outside), while the nitrogenous bases point inward and form the rungs.

4. Complementary base pairing

The two strands are held together by hydrogen bonds between specific, complementary base pairs:

  • Adenine (A) pairs with Thymine (T) via 2 hydrogen bonds
  • Guanine (G) pairs with Cytosine (C) via 3 hydrogen bonds …

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