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Cloning and Expression of Genes

Cloning and Expression of Genes. Insulin: Harmone regulating blood sugar (glucose) Obtain Insulin Gene from Human DNA Insert gene in bacterial cells Select cells that have desired gene Induce bacteria to express foreign gene to produce insulin Collect and purify insulin. Isolating the Gene.

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Cloning and Expression of Genes

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  1. Cloning and Expression of Genes • Insulin: Harmone regulating blood sugar (glucose) • Obtain Insulin Gene from Human DNA • Insert gene in bacterial cells • Select cells that have desired gene • Induce bacteria to express foreign gene to produce insulin • Collect and purify insulin

  2. Isolating the Gene • Isolate mRNA • Copy to DNA with reverse transcriptase • cDNA (copy or complementary DNA)

  3. Inserting the Gene • Carrier DNA is a vector • Plasmids: Circular DNA found in microorganisms • Cloning Vector • Easily transferred, incorporated, and isolated • Inserted with restriction enzymes • Cut up foreign DNA

  4. Selecting Cells with Desired Gene • Most cells don’t take up DNA • Ampicillin resistance gene in plasmid vectors • Only cells with plasmids grow • Blue-White Screening for gene or not • Intact bacteria gene or not, Blue or White

  5. Isolating the Insulin

  6. Analysis of DNA • Gel Electrophoresis • DNA Sequencing • Hybridization • Polymerase Chain Reaction • DNA Chips • Human Genome Project

  7. DNA LIGATION   ’ ’   ’ ’ ’ ’ Ligase Joins 5' phosphate to 3' hydroxyl

  8. Gel Electrophoresis • Sort DNA by Size • Electrophoresis is separation of particles in an electric field based on charge • Thin Agarose Gels: Matrix of interlocking fibers • DNA has negative charge • Repates through matrix • Ethidium Intercalator for visualization • Entanglement and speed related to charge and size • Restriction Map: Different restriction enzymes, different size maps, ID restriction sites

  9. GEL ELECTROPHORESIS - SIZE SORTING Electrode Samples Slower Gel Buffer Electrode Faster

  10. 5’ P - - OH 3’ EcoRI - P 5’ 3’ OH - HindIII AluI HaeIII RESTRICTION ENDONUCLEASES

  11. Sequencing • Isolate fragment to be sequenced as SS • 4 Tubes, 4 Bases • Add mix of nucleotides, DNA polymerase, and primers with radioactive labels • In each tube as single base is modified (dideoxynucleotide) • Once added no other nucleotides added • Chain Termination Sequencing

  12. DNA Sequencing

  13. Hybridization • Binding of complementary DNA strands to each other • Find insulin sequence? Need prior information • Hybridize with part of the insulin sequence

  14. Gene Expression • Study production of mRNA in the cell • Clone genes of interest • Make cDNA probes • Sample mRNA populations of cell • Detect by hybridization to radioactive probe

  15. Polymerase Chain Reaction • Amplify a single piece of DNA • Makes a large number of copies • Target specific primers allow specific sequences to be amplified

  16. DNA Polymerase

  17. POLYMERASE CHAIN REACTION

  18. DNA Arrays • DNA Sequences Affixed to Solid Support • Genotyping and Gene Expression • Entire Genomes on Chips • Look at Relative Intensity Levels • Massively Parallel • Loads of Data • Interpretation, Storage, Analysis?

  19. http://www.affymetrix.com

  20. http://cmgm.stanford.edu/pbrown/

  21. CACCATGTGAC CACCATGTGAC PMP CACCATGTGAC N B PMP S ANTIBODY AFFINITY Add oligo with Biotin label + B GTGGTACACTG Anneal Heat and cool Add Paramagnetic-Streptavidin Particles + B GTGGTACACTG Bind Isolate with Magnet GTGGTACACTG

  22. Mapping and Sequencing the Human Genome • Find all genes in Human Genome • Develop Tools for Analysis in Biology and Medicine • Tools: • Restriction Enzymes • PCR • DNA Arrays

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