cody verostic dna_replication

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DNA Replication By Cody Verostic

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Page 1: Cody verostic dna_replication

DNA Replication

By Cody Verostic

Page 2: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

Page 3: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 4: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 5: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 6: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 7: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 8: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 9: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 10: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 11: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

DNA Helicase comes in and unzips the double helix.

5’

3’

3’

5’

Page 12: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 13: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 14: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 15: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 16: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 17: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 18: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 19: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 20: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 21: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 22: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 23: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 24: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 25: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 26: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 27: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 28: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 29: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 30: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 31: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 32: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 33: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 34: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 35: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.

Page 36: Cody verostic dna_replication

Sugar

Phosphate

Adenine

Thymine

Cytosine

Guanine

DNA Helicase

5’

3’

3’

5’

The DNA strands are split up and connected with the other fragments in the process of Polymerase.