21.4
DNA resembles a twisted ladder. And the rungs of the DNA ladder are complementary pairs of nitrogenous bases. According to base pairing rules, adenine, a purine, pairs with thymine, a pyrimidine, with two hydrogen bonds. And guanine, a purine, appears with cytosine, a pyrimidine, with three hydrogen bonds. But why do purines always pair with pyrimidines?
Due to steric constraints, that is, spatial restrictions imposed by the sugar phosphate backbone of the DNA, only a 10.85 angstrom space is available for the base pairs in a DNA double helix.
Purines have a double ring structure. Therefore, two purines together will be too big to fit in this space. On the other hand, if we put two pyrimidines together, which contain only a single ring, the distance between them will be too large to form hydrogen bonds, which are approximately two angstroms long.
However, if we pair a purine and a pyrimidine together, they fit perfectly inside the DNA helix and are close enough to form hydrogen bonds. Hydrogen bonds can form when a hydrogen atom is approximately two angstroms away from an electronegative atom, such as oxygen or nitrogen.
Adenine has one hydrogen atom close to an oxygen and thymine.
Erwin Chargaff’s rules on DNA equivalence paved the way for the discovery of base pairing in DNA. Chargaff’s rules state that in a double-stranded DNA…
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