Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

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Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006
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Transcript of Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Page 1: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Biological Sciences 210 - Genetics and Molecular Biology

Fall, 2006

Page 2: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Sequence of the CF Gene

Page 3: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

The 4 Nucleotides in DNA

Page 4: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

DNA Structure

Page 5: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

The DNA Double Helix

Page 6: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

E.M. of Prokaryotic Genome

Page 7: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Electron Micrograph of Plasmids

Page 8: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Genes and Intergenic Regions

Page 9: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Chromatin Structure

Page 10: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Chromatin Structure

Page 11: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Chromatin Structure

Page 12: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Human Karyotype

Page 13: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Comparative Genomes

Page 14: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Gene Structure

Page 15: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

One Strand of a Gene is the Transcribed (Template) Strand

Page 16: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Figure 3-4, p. 60

Page 17: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Protein Structure

Page 18: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

The Genetic Code

Page 19: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Missense Point Mutation

Wild-Type Missense Mutant

• DNA 3'-TACTTTGTCGGTCCA…-5' 3’-TACTTTGTAGGTCCA…-5'

• mRNA 5'-AUGAAACAGCCAGGU…-3' 5’-AUGAAACAUCCAGGU…-3'

• Protein fMet--Lys-Gln--Pro-Gly… fMet--Lys-His--Pro-Gly…

Page 20: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Nonsense Point Mutation

Wild-Type Nonsense Mutant

• DNA 3'-TACTTTGTCGGTCCA…-5' 3'-TACATTGTAGGTCCA…-5'

• mRNA 5'-AUGAAACAGCCAGGU…-3’ 5'-AUGUAACAUCCAGGU…-3'

• Protein fMet--Lys-Gln--Pro-Gly… fMet

Page 21: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Silent Point Mutation

Wild-Type Silent Mutant

• DNA 3'-TACTTTGTCGGTCCA…-5' 3'-TACTTTGTTGGTCCA…-5'

• mRNA 5'-AUGAAACAGCCAGGU…-3’ 5'-AUGAAACAACCAGGU…-3'

• Protein fMet--Lys-Gln--Pro-Gly… fMet--Lys-Gln--Pro-Gly…

Page 22: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Frameshift Mutations

• READING FRAME - Translation of an mRNA must start at the appropriate AUG of the mRNA and work along the mRNA in a 5' ----> 3' direction, reading the mRNA in units of 3. It must read in the exactly correct sequence of 3-base codons.

• Demonstration:

• THE FAT CAT ATE THE BIG RAT

• HEF ATC ATA TET HEB IGR AT

Page 23: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Frameshift Mutation• Frameshift mutations change the reading frame of the messenger RNA.

• For example: Template strand of DNA

• 3'-TACAGAGTGCTGCAT…-5'

• 5'-AUGUCUCACGACGUA…-3' mRNA

• AUG UCU CAC GAC GUA… codons

• fMet -- Ser -- His -- Asp -- Val…

• Through a deletion, the DNA strand loses the fifth base in the sequence above:

• 3'-TACAAGTGCTGCAT…-5'

• 5'-AUGUUCACGACGUA…-3' mRNA

• AUG UUC ACG ACG UA…

• fMet-- Phe -- Thr -- Thr…

Page 24: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Structure of the CFTR Protein

Page 25: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.
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Page 32: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Automated DNA Sequencing Data

Page 33: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

GGCTTACGGTTACTCGAATTCTACCGCAAGAATTCTGCTATTT

*Cuts at 1st EcoR I site, but not at 2nd EcoR I site (Partial digest):

GGCTTACGGTTACTCG + AATTCTACCGCAAGAATTCTGCTATTT

GGCTTACGGTTACTCGAATTCTACCGCAAGAATTCTGCTATTT

*Does not Cut at 1st EcoR I site, but cuts at 2nd EcoR I site (Partial digest):

GGCTTACGGTTACTCGAATTCTACCGCAAG + AATTCTGCTATTT

Now, you can align into Contigs!

GGCTTACGGTTACTCGAATTCTACCGCAAG

AATTCTACCGCAAGAATTCTGCTATTT

GGCTTACGGTTACTCGAATTCTACCGCAAGAATTCTGCTATTT

Page 34: Biological Sciences 210 - Genetics and Molecular Biology Fall, 2006.

Constructing cDNA