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Published byJessica Russell Modified over 9 years ago
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Figure 7.1 E. coli RNA polymerase
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Figure 7.2 Sequences of E. coli promoters
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Figure 7.3 Transcription by E. coli RNA polymerase
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Figure 7.4 Structure of bacterial RNA polymerase
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Figure 7.5 Transcription termination
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Figure 7.6 Metabolism of lactose
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Figure 7.7 Negative control of the lac operon
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Figure 7.8 Positive control of the lac operon by glucose
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Table 7.1 Classes of genes transcribed by eukaryotic RNA polymerases
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Figure 7.9 Structure of yeast RNA polymerase II
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Figure 7.10 Formation of a polymerase II preinitiation complex in vitro
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Figure 7.10 Formation of a polymerase II preinitiation complex in vitro (Part 1)
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Figure 7.10 Formation of a polymerase II preinitiation complex in vitro (Part 2)
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Figure 7.11 RNA polymerase II/Mediator complexes and transcription initiation
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Figure 7.12 The ribosomal RNA gene
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Figure 7.13 Initiation of rDNA transcription
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Figure 7.14 Transcription of RNA polymerase III genes
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Figure 7.15 Identification of eukaryotic regulatory sequences
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Figure 7.16 A eukaryotic promoter
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Figure 7.17 The SV40 enhancer
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Figure 7.18 Action of enhancers
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Figure 7.19 DNA looping
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Figure 7.20 The immunoglobulin enhancer
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Figure 7.21 Insulators
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Figure 7.22 Electrophoretic-mobility shift assay
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Figure 7.23 Representative transcription factor binding sites
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Figure 7.24 Chromatin immunoprecipitation
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Figure 7.24 Chromatin immunoprecipitation (Part 1)
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Figure 7.24 Chromatin immunoprecipitation (Part 2)
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Figure 7.25 Purification of Sp1 by DNA-affinity chromatography
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Key Experiment, Ch. 7, p. 259 (1)
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Key Experiment, Ch. 7, p. 259 (2)
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Figure 7.26 Structure of transcriptional activators
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Figure 7.27 Examples of DNA-binding domains
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Figure 7.27 Examples of DNA-binding domains (Part 1)
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Figure 7.27 Examples of DNA-binding domains (Part 2)
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Figure 7.27 Examples of DNA-binding domains (Part 3)
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Figure 7.27 Examples of DNA-binding domains (Part 4)
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Figure 7.28 The Antennapedia mutation
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Figure 7.28 The Antennapedia mutation (Part 1)
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Figure 7.28 The Antennapedia mutation (Part 2)
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Figure 7.29 Action of transcriptional activators
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Figure 7.30 Action of eukaryotic repressors
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Figure 7.30 Action of eukaryotic repressors (Part 1)
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Figure 7.30 Action of eukaryotic repressors (Part 2)
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Figure 7.31 Regulation of transcriptional elongation
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Figure 7.31 Regulation of transcriptional elongation (Part 1)
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Figure 7.31 Regulation of transcriptional elongation (Part 2)
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Figure 7.32 Decondensed chromosome regions in Drosophila
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Figure 7.33 Histone acetylation
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Figure 7.33 Histone acetylation (Part 1)
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Figure 7.33 Histone acetylation (Part 2)
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Figure 7.34 Patterns of histone modification
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Figure 7.34 Patterns of histone modification (Part 1)
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Figure 7.34 Patterns of histone modification (Part 2)
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Figure 7.35 Epigenetic inheritance of histone modifications
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Figure 7.36 Chromatin remodeling factors
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Figure 7.37 Regulation of transcription by siRNAs
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Figure 7.38 X chromosome inactivation
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Figure 7.39 DNA methylation
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Figure 7.40 Maintenance of methylation patterns
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Figure 7.41 Genomic imprinting
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Figure 7.42 Processing of ribosomal RNAs
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Figure 7.43 Processing of transfer RNAs
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Figure 7.43 Processing of transfer RNAs (Part 1)
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Figure 7.43 Processing of transfer RNAs (Part 2)
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Figure 7.44 Processing of eukaryotic messenger RNAs
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Figure 7.45 Formation of the 3' ends of eukaryotic mRNAs
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Figure 7.46 In vitro splicing
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Figure 7.47 Splicing of pre-mRNA
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Figure 7.48 Assembly of the spliceosome
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Figure 7.48 Assembly of the spliceosome (Part 1)
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Figure 7.48 Assembly of the spliceosome (Part 2)
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Figure 7.49 Binding of U1 snRNA to the 5' splice site
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Key Experiment, Ch. 7, p. 284 (1)
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Key Experiment, Ch. 7, p. 284 (2)
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Figure 7.50 Self-splicing introns
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Figure 7.51 Role of splicing factors in spliceosome assembly
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Figure 7.52 Alternative splicing in Drosophila sex determination
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Figure 7.53 Alternative splicing of Dscam
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Figure 7.54 Editing of apolipoprotein B mRNA
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Figure 7.55 mRNA degradation
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