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Exam 3 (mean 76%) A 70-63 B 62-56 C 55-49 D 48-42 F 41-0

Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

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Page 1: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Exam 3 (mean 76%)

A 70-63

B 62-56

C 55-49

D 48-42

F 41-0

Page 2: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

• Today-Ch 13

• Announcements – Look for Chapter 12 and 13 quizzes

posted this weekend.– Exam 4 covers Chapters 12, 13 and 16 (last

exam you can drop. Everyone must take the final exam)

Page 3: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Biology 190Chapter 16 pictures

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DNA Replication occurs at the “S” stage of mitosis

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Fig 5.26 Nucleotides

U

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ACCCCAG

Fig 16.5 One DNA strand.

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Fig 16.6 Double HelixACCCCAG

-T-G-G-G-G-T-C

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Chargaff’s Rule

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Question 16.1

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Functions of Proteins

• Structural• Catalytic activity• Immunity• Regulation • Poisons• Transport molecules• Hormones• Fluid and electrolyte balance • Sources of energy

Page 11: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Fredrick Griffith’s Experiments

Polysaccharide Coat

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Fredrick Griffith’s Results

Live R-strainpicked up DNA from the S-strain. Contains genes for “smooth coat”.

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Alfred Hershey and Martha Chase

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How viruses (phages) infect bacteria

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Fig 16.4 Hershey and Chase

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Watson and Crick

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Rosalind Franklin’s Data(Maurice Wilkins’ Lab)

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What exactly IS the structure of DNA?

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Chargaff’s Rule

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Nucleotide base pairing

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Fig 16.7 Structure of DNA

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Nobel Prize- 1962Wilkins Crick Watson

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Figure 16.9 Semiconservative Model for DNA Replication

Parental strands(template strands)

Daughter strands

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DNA Origin of Replication

Bacteria have one origin of replication.

Fig 16.12 Eukaryotic organisms have multipleorigins of replication.

Page 25: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Unwinding DNA

Single-strandedBinding Proteins

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Nucleoside Triphosphate

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Fig 16.13 DNA Polymerase(Daughter strand) (Parent strand)

(Old strand)

P

Page 28: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Questions 6.3 & 6.4

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Fig 16.14ReplicationFork

Leading Strand

5’

3’

Lagging Strand

5’

3’

5’

5’

5’

5’

3’

3’

3’

3’

5’

5’

3’

3’

Old strandsParent strandsTemplate strands

Page 30: Exam 3 (mean 76%) A70-63 B62-56 C55-49 D48-42 F41-0

Fig 16.14

DNA Ligase

DNA Polymerase III

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Fig 16.13 DNA polymerase needs a 3’ -OH group

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Fig 16.16

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Fig 16.16. Review of Bacterial DNA Replication

Helicase

SS bindingproteins

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Fig 16.18DNA shortening and telomeres

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Mismatch repair

2 Purines = bulge

2 Pyrimidines = dimpleT C

G A

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Fig 16.17 Excision Repair

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Xeroderma Pigmentosa

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In very, very, vary rare cases mutations have a

selective advantage