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  • 1. Nucleus
  • 2. Key:Adenine –Thymine –
  • 3. Key:RNA binds to the Promoter Region Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 4. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Codon Coding Region RNA Polymerase mRNA Strand
  • 5. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Coding  Coding Region RNA Polymerase mRNA Strand
  • 6. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 7. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 8. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 9. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 10. Key:RNA Polymerase Reads the DNA Adenine –strand and makes the mRNA Thymine –strand. Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 11. Key: Adenine – Thymine – Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 12. Key: Adenine – Thymine – Cytosine – Guanine – Urasil -Start Coding  Coding Region RNA Polymerase mRNA Strand
  • 13. Key: Adenine – Thymine – Cytosine – Guanine – Urasil -Start Coding  Coding Region Stop Codon RNA Polymerase mRNA Strand Termination Sequence
  • 14. mRNA strand leaves the Nucleus  Ribosomes
  • 15. mRNA strand leaves the Nucleus  Ribosomes
  • 16. mRNA strand leaves the Nucleus  Ribosomes
  • 17. mRNA strand leaves the Nucleus  Ribosomes
  • 18. mRNA strand leaves the Nucleus  Ribosomes
  • 19. mRNA strand leaves the Nucleus  Ribosomes
  • 20. mRNA strand leaves the Nucleus  Ribosomes
  • 21. mRNA strand leaves the Nucleus  Ribosomes
  • 22. mRNA strand leaves the Nucleus  Ribosomes
  • 23. mRNA strand leaves the Nucleus  Ribosomes
  • 24. mRNA strand leaves the Nucleus  Ribosomes
  • 25. mRNA strand leaves the Nucleus  Ribosomes
  • 26. mRNA strand leaves the Nucleus  Ribosomes
  • 27. mRNA strand leaves the Nucleus  Ribosomes
  • 28. rRNA makes ribosome  Ribosomes
  • 29. rRNA makes ribosome  Ribosomes
  • 30. rRNA makes ribosome  Ribosomes
  • 31. rRNA makes ribosome  Ribosomes
  • 32. rRNA makes ribosome  Ribosomes
  • 33. rRNA makes ribosome  Ribosomes
  • 34. rRNA makes ribosome  Ribosomes
  • 35. rRNA makes ribosome  Ribosomes
  • 36. rRNA makes ribosome  Ribosomes
  • 37. rRNA makes ribosome  Ribosomes
  • 38. rRNA makes ribosome  Ribosomes
  • 39. rRNA makes ribosome  Ribosomes
  • 40. rRNA makes ribosome Cell Cytoplasm
  • 41. rRNA makes ribosome Cell Cytoplasm
  • 42. rRNA makes ribosome Cell Cytoplasm
  • 43. rRNA makes ribosome Cell Cytoplasm
  • 44. rRNA makes ribosome
  • 45. rRNA makes ribosome Cell Cytoplasm
  • 46. The Ribosome reads the code
  • 47. The Ribosome reads the code
  • 48. The Ribosome reads the code mRNA binds the protein
  • 49. The Ribosome reads the code mRNA binds the protein
  • 50. The Ribosome reads the code mRNA binds the protein
  • 51. The Ribosome reads the code mRNA binds the protein
  • 52. The Ribosome reads the code mRNA binds the protein
  • 53. Me t Amino acid Anticodon Key: Adenine –tRNA has the anitcodon Thymine –The amino acid attaches Cytosine – Guanine – Urasil -
  • 54. Me t SerAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 55. Me t Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 56. Me t Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 57. Me t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 58. Me Ser t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 59. Me Ser Tyr t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 60. Me Ser Tyr Lle t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 61. Glu Me Ser Tyr Lle t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 62. Glu Stop Me Ser Tyr Lle t Arg Phe Ser GlyAmino acid AnticodonPeptide Bonds bind Amino Key:Acids Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 63. Glu Stop Me Tyr Ser Gly t Lle Ser Phe ArgAmino acid Chain Ribosome hits “STOP Codon” Anticodon Protein Synthesis is Complete Key: Adenine – Thymine – Cytosine – Guanine – Urasil -
  • 64. Amino Acid Chain coils into aCompleted Protein
  • 65. Transcription• RNA Polymerase binds and unwinds DNA. RNA Polymerase binds to promote region of DNA. RNA Polymerase reads DNA and creates the mRNA strand. RNA Polymerase hits stop codon and releases mRNA. mRNA leaves nucleus and enters Cytoplasm
  • 66. Translation• rRNA forms a ribosome. mRNA binds to the ribosome. Code is read. tRNA has the anti codon and Amino acid attaches . Amino acids bind to each other with a peptide bond. Ribosome hits stop codon and protein synthesis a complate