recombinant dna technology. restriction endonucleases - blunt ends and sticky ends

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Recombinant DNA Technology

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Page 1: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Recombinant DNA Technology

Page 2: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Restriction endonucleases - Blunt ends and Sticky ends

Page 3: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Restriction endonuclease and DNA ligase yield Recombinant DNA

Page 4: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends
Page 5: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

DNA cloning

Page 6: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Polylinker – multiple restriction sites

Page 7: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Selection of clones

Page 8: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends
Page 9: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Bacterial Artificial Chromosomes (BAC)

Transformation:

1. Heat shock: CaCl2 at 0oC then heat to 37-42oC

2. Electroporation – apply high voltage

BAC – 5,000 to 400,000 bp insert

Page 10: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Yeast Artificial Chromosomes (YAC)

Page 11: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

up to 150,000 bp insert

Page 12: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Studying genes – cDNA library

Page 13: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Polymerase Chain Reaction (PCR)

Page 14: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends
Page 15: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Cloning of PCR products

Page 16: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Hybridization allows the deletion of specific sequences

Page 17: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

DNA fingerprinting – RFLP (restriction fragment length polymorphism)

Page 18: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

DNA microarrays

Any known DNA sequence from any source, can be used in microarray.

Green spots – mRNA more abundant in single-cell stage

Red spots – mRNA more abundant at later stages of development

Page 19: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Cloned genes can be expressed – Expression vector

Page 20: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Cloned genes can be altered

1. Site-directed mutagenesis

2. Oligonucleotide-directed mutagenesis

Page 21: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends

Transgenic – cloning in mice for human growth hormone

Page 22: Recombinant DNA Technology. Restriction endonucleases - Blunt ends and Sticky ends