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I. Genes to proteins p. 208 – Gene expression A. Decoding DNA

I. Genes to proteins p. 208 – Gene expression A. Decoding DNA 1. RNA: ribonucleic acid. a. Comparing DNA to RNA. Do the compare and contrast sheet as a class. RNA. B. Transfer of DNA into protein – p. 208 1. transcription – 2. translation –.

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I. Genes to proteins p. 208 – Gene expression A. Decoding DNA

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  1. I. Genes to proteins p. 208 – Gene expression A. Decoding DNA 1. RNA: ribonucleic acid

  2. a. Comparing DNA to RNA

  3. Do the compare and contrast sheet as a class

  4. RNA

  5. B. Transfer of DNA into protein – p. 208 1. transcription – 2. translation –

  6. C. Steps in transcription pg 209 1. RNA polymerase binds to a promoter 2. Separation of the two strands 3. Complementary RNA nucleotides are added 4. mRNA – is released out of the nucleus

  7. Transcription

  8. D. Steps of Translation pg 211 1. mRNA enters the cytoplasm 2. tRNA pairs up with mRNA with the help of rRNA pg 212 a. nucleotides are read 3 at a time codon pg 211 anticodon pg 212

  9. 3. tRNA transfers its amino acid to the mRNA train 4. Amino acids are added to a chain until tRNA hits a stop codon

  10. Translation

  11. II. The Genetic Code

  12. What would be the amino acid sequence for this mRNA strand? AUG/GGG/CGG/AAG/AAA/UAG

  13. AUG/GGG/CGG/AAG/AAA/UAG “start”/Glycine/Arginine/Lysine/Lysine/”stop”

  14. DNA: TAC/CCT/GGC/ACT mRNA: COMPLEMENTARY CODON BONDING in Protein Synthesis:

  15. DNA: TAC/CCT/GGC/ACT mRNA: AUG/GGA/CCG/UGA tRNA:

  16. mRNA: AUG/GGA/CCG/UGA tRNA: UAC/CCU/GGC/ACU Amino Acids:

  17. mRNA: AUG/GGA/CCG/UGA tRNA: UAC/CCU/GGC/ACU Amino Acids: “start”/glycine/proline/”stop”

  18. mRNA: AUG/GGA/CCG/UGA tRNA: UAC/CCU/GGC/ACU Amino Acids: “start”/glycine/proline/”stop”

  19. III. Mutations • Dleletion - • Duplication- • Inversion - • Translocation-

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