chapter 1 dna structure & gene expression 1.structure of dna, rna, and polypeptides dna &...

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Chapter 1 DNA Structure & Gene Expression 1. Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines, pyrimidines - differences between DNA & RNA - difference between nucleoside and nucleotide

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Page 1: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

Chapter 1

DNA Structure & Gene Expression

1. Structure of DNA, RNA, and polypeptides• DNA & RNA are long polymers of nucleotides

- nitrogenous bases – purines, pyrimidines

- differences between DNA & RNA

- difference between nucleoside and nucleotide

Page 2: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 3: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 4: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 5: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Polypeptides are long polymers of amino acids

- structure of amino acids – charged polar (basic and acidic), uncharged polar, and nonpolar (hydrophobic).

Page 6: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 7: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 8: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 9: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

2. Chemical bonds and structure: Primary linear structure of DNA, RNA, and proteins is held by strong covalent bonds while weaker noncovalent bonds (hydrogen, ionic, Van der Waals’, and hydrophobic forces) are responsible for intermolecular associations in the secondary, tertiary, and in some cases (proteins) quaternary structure of the molecule.

Page 10: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

3. DNA structure and its replication:

• DNA is an antiparallel double helix

Page 11: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 12: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 13: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 14: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Intramolecular hydrogen bonding permits RNA-DNA duplexes and double-stranded RNA formation. Such structure formations are relevant in regulating gene expression.

Page 15: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 16: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• DNA replication is semi-conservative

Page 17: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 18: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 19: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• DNA replication in mammalian cells requires several enzymes and other proteins: Topoisomerases, helicases, DNA-directed DNA polymerase, RNA-directed DNA polymerases (reverse transcriptase) such as that present in telomerase (used to replicates ends of chromosomes). See Box 1.2 (page 12).

Page 20: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Viral genomes are frequently maintained by RNA replication.

Page 21: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 22: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 23: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

4. RNA transcription & gene expression:

• DNA RNA Protein (in most cases)

• Only a small fraction is expressed to give proteins or just RNA.

• For any gene, there is a sense strand (like the RNA transcript) and a template strand (antisense strand).

Page 24: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 25: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 26: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Eukaryotic gene expression requires cis-acting regulatory elements (DNA sequences such as promoters, 5’ UTR, 3’UTR, enhnacers, silencers) and transacting transcription factors (proteins such as activators and repressors of gene expression.

Page 27: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 28: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Housekeeping genes (such as those encoding histones and ribosomal proteins) are constitutively expressed in all cell types.

• Tissue-specific genes are spatially regulated while developmentally regulated genes are spatially regulated.

• Transcriptionally inactive chromatin is characterized by being heterochromatic (highly condensed), is tightly bound to H1 histones, and is replicated in late S phase.

• Transcriptionally active chromatin is euchromatic (open conformation), replicated early in S phase, weak binding to H1 histone, and has extensive acetylation of the histones H2A, H2B, H3, and H4).

Page 29: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

5. RNA processing:• RNA splicing (spliceosome)• Capping by 7-methylguanosine at 5’ end• Polyadenylation : for mRNA the sequence

AAUAAA at 3’ end is a polyadenylation signal and cleavage occurs 15-30 nucleotides downstream from such signal. Poly(A) polymerase then adds about 200 adenylate residues forming a poly(A) tail.

Page 30: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 31: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 32: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 33: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 34: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 35: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

6. Translation, post-transcriptional processing and protein structure:

• 5’UTR and 3’UTR regions of the mRNA are not translated.

• The genetic code is degenerate (wobble hypothesis at the third base position of codons) and not quite universal.

Page 36: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 37: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 38: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 39: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 40: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

• Post-translational modification include chemical modifications of some amino acids and polypeptide cleavage.

- By adding carbohydrate groups (N-glycosylation & O-glycosylation)

- By addition of lipid groups (glycosylphosphatidyl inositol)

- Postranslational cleavage e.g. insulin.

- Protein secretion and intracellular export.

Page 41: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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Page 42: Chapter 1 DNA Structure & Gene Expression 1.Structure of DNA, RNA, and polypeptides DNA & RNA are long polymers of nucleotides - nitrogenous bases – purines,

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