chapter 17 pictures
DESCRIPTION
Chapter 17 pictures. prokaryotes. Fig 17.3 Gene expression. eukaryotes. Figure 17.4. Question 17.1. RNA polynucleotide chain is single-stranded. Structure of RNA Nucleotides. Transcription. Fig 17.7b. Fig 17.8: Initiation of Transcription begins at the Promoter Region. - PowerPoint PPT PresentationTRANSCRIPT
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Chapter 17 pictures
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Fig 17.3Gene expression
eukaryotes
prokaryotes
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Figure 17.4
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Question 17.1
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RNA polynucleotide chain is single-stranded.
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Structure of RNA Nucleotides
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Transcription
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Fig 17.7b
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Fig 17.8: Initiation of Transcription begins at the Promoter Region
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Fig 17.7: Transcription of RNA
1. Initiation of Transcription
2. Transcriptional Elongation
3. Termination of Transcription
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Pre-mRNA Modifications
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Figure 17.3 Eukaryotic
Gene Expression
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Fig 17.10: Processing of Eukaryotic RNA
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Translation
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Gene flow and the triplet code
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Question 7.2
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Fig 17.5: Codon Chart
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Fig 17.14 Planer View Structure for Fig 17.14 Planer View Structure for t-RNAt-RNA
Anticodon regionbase pairs with mRNA
Amino acidAttachment site
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3-D and Barrel Shapes for t-RNA3-D and Barrel Shapes for t-RNA
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Fig 17.16 Fig 17.16 Ribosome Ribosome StructureStructure
Computer-generated Model
Schematic Model
Schematic Model 2
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Initiation of TranslationInitiation of Translation
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Fig 17.7 Initiation of TranslationFig 17.7 Initiation of Translation
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Initiation of TranslationInitiation of Translation
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ElongationElongation
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ElongationElongationPeptidePeptideBondBond
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TranslocationTranslocation
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TranslocationTranslocation
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Elongation RepeatedElongation Repeated
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Elongation and Translocation Elongation and Translocation RepeatedRepeated
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TerminationTermination
UGAUGA
Stop CodonStop Codon
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UGAUGA
TerminationTermination
Release Release FactorFactor
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TerminationTermination
UGAUGA
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TerminationTermination
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Fig 17.20Polyribosomes(Polysomes)
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Fig 17.24 Base Pair SubstitutionsFig 17.24 Base Pair Substitutions
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Fig 17.23 Base-Pair Substitution in the Fig 17.23 Base-Pair Substitution in the Sickle Cell Gene leads to a Missense Mutation in the Sickle Cell Gene leads to a Missense Mutation in the
Codon.Codon.
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Fig 17.25 Insertions or Deletions in the DNA can lead to Frameshift Mutations in the Codon of mRNA
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Question 17.3