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Chapter 11 Opener. Figure 11.1 Potential Points for the Regulation of Gene Expression.

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Presentation on theme: "Chapter 11 Opener. Figure 11.1 Potential Points for the Regulation of Gene Expression."— Presentation transcript:

1 Chapter 11 Opener

2 Figure 11.1 Potential Points for the Regulation of Gene Expression

3 Figure 11.2 Positive and Negative Regulation

4

5 Figure 11.2 Positive and Negative Regulation (Part 1)

6 Figure 11.2 Positive and Negative Regulation (Part 2)

7 Figure 11.3 A Gene Regulation Strategy for Viral Reproduction

8

9 Figure 11.4 The Reproductive Cycle of HIV

10

11 Figure 11.5 Regulation of Transcription by HIV

12

13 Figure 11.5 Regulation of Transcription by HIV (Part 1)

14 Figure 11.5 Regulation of Transcription by HIV (Part 2)

15 Figure 11.6 Two Ways to Regulate a Metabolic Pathway

16

17 Figure 11.7 The lac Operon of E. coli

18 Apply the Concept, Ch. 11, p. 214

19 Figure 11.8 The lac Operon: An Inducible System

20

21 Figure 11.8 The lac Operon: An Inducible System (Part 1)

22 Figure 11.8 The lac Operon: An Inducible System (Part 2)

23 Figure 11.9 The trp Operon: A Repressible System

24

25 Figure 11.9 The trp Operon: A Repressible System (Part 1)

26 Figure 11.9 The trp Operon: A Repressible System (Part 2)

27 In-Text Art, Ch. 11, p. 216

28 Table 11.1 Transcription in Bacteria and Eukaryotes

29 Figure 11.10 The Initiation of Transcription in Eukaryotes

30

31 Figure 11.10 The Initiation of Transcription in Eukaryotes (Part 1)

32 Figure 11.10 The Initiation of Transcription in Eukaryotes (Part 2)

33 Figure 11.11 A Transcription Factor Protein Binds to DNA

34

35 Figure 11.12 Coordinating Gene Expression

36

37 Figure 11.13 DNA Methylation: An Epigenetic Change

38

39 Figure 11.13 DNA Methylation: An Epigenetic Change (Part 1)

40 Figure 11.13 DNA Methylation: An Epigenetic Change (Part 2)

41 Figure 11.14 X Chromosome Inactivation

42

43 In-Text Art, Ch. 11, p. 219 (1)

44 In-Text Art, Ch. 11, p. 219 (2)

45 Figure 11.15 Epigenetic Remodeling of Chromatin for Transcription

46

47 Figure 11.16 Alternative Splicing Results in Different Mature mRNAs and Proteins

48 Figure 11.17 mRNA Degradation Caused by MicroRNAs

49

50 Figure 11.18 A Repressor of Translation

51

52 Figure 11.19 A Proteasome Breaks Down Proteins

53

54 Apply the Concept, Ch. 11, p. 224

55 Figure 11.20 An Explanation for Alcoholism?


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