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From DNA to Protein

From DNA to Protein

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From DNA to Protein. Knowledge of Nucleic Acid Chemistry Is Essential to the Understanding of DNA Structure. Nucleotides are the building blocks of DNA. They consist of a nitrogenous base, a pentose sugar, and a phosphate group. - PowerPoint PPT Presentation

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Page 1: From DNA to Protein

From DNA to Protein

Page 2: From DNA to Protein
Page 3: From DNA to Protein

Knowledge of Nucleic Acid Chemistry Is Essential to the Understanding of DNA Structure

Page 4: From DNA to Protein

• Nucleotides are the building blocks of DNA. They consist of a nitrogenous base, a pentose

sugar, and a phosphate group.

Page 5: From DNA to Protein

• A nucleoside contains the nitrogenous base and the pentose sugar. A nucleotide is a

nucleoside with a phosphate group added

Page 6: From DNA to Protein
Page 7: From DNA to Protein

• The nitrogenous bases can be purines or pyrimidines. The purines are adenine (A) and guanine (G). The pyrimidines are cytosine (C),

thymine (T), and uracil (U)

Page 8: From DNA to Protein
Page 9: From DNA to Protein
Page 10: From DNA to Protein
Page 11: From DNA to Protein

• RNA contains ribose as its sugar; DNA contains deoxyribose

• The C-5' position is the location of the phosphate group on a nucleotide.

• DNA and RNA both contain A, C, and G, but only DNA contains T and only RNA contains U.

Page 12: From DNA to Protein

• Nucleotides are linked by a phosphodiester bond between the phosphate group at the C-5' position and the OH group on the C-3' position

Page 13: From DNA to Protein

Nucleotides are linked by a phosphodiester bond between the phosphate group at the C-5' position and the OH

group on the C-3' position

Page 14: From DNA to Protein

A polynucleotide chain

Page 15: From DNA to Protein

Antiparallel nature of the helix and the horizontal stacking of the bases.

Page 16: From DNA to Protein

• Watson and Crick proposed DNA is a double helix in which the two strands are antiparallel and the bases are stacked on one another.

The two strands are connected by A-T and G-C base pairing and there are 10 base pairs per

helix turn

Page 17: From DNA to Protein

The DNA double helix as proposed by Watson and Crick

Page 18: From DNA to Protein
Page 19: From DNA to Protein

Polymerase Chain Reaction (PCR)