SlideShare a Scribd company logo
1 of 35
 1.RNA polymerase binds to and unwinds the DNA.
 2.RNA polymerase is sent to promoter region.
 3.RNA polymerase reads the DNA to create mRNA
 4.RNA polymerase reaches the stop codon and
  releases the mRNA

 5.mRNA leaves nucleus and enters the cytoplasm
DNA strand




G C   A   T   G   G   T   T   A   G   C   C   C    T   T   A   A   G       T   C   C   T   C   G   G   A       A TC

C G   T   A   C   C   A   A   T   C   G   G   G   A    A   T   T   C   A       G   G   A   G   C   C   T   T    A G




  G= Guanine
                                                  The promoter region activates the
  C= Cytosine                                     DNA
  T= Thymine
  A= Adenine
A U    G   U   G    G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




erase




                    Coding region- reads the single strand and makes a
                    mRNA copy
A U   G   U   G   G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




RNA
Polymerase




U A   C
A U   G   U   G   G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




          RNA
          Polymerase




U A   C   A   C   C
A U   G   U   G   G       U       U       A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




                      RNA
mRNA                  Polymerase




U A   C   A   C   C   A       A       U
A U   G   U   G   G       U       U       A       G       C       C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




                                                  RNA
mRNA                                              Polymerase




U A   C   A   C   C   A       A       U       C       G       G
A U   G   U   G   G       U       U       A       G       C       C   C    U U    A   A   G   U   C   C   U   C   G   G   A   A UC




                                                                          RNA
mRNA                                                                      Polymerase




U A   C   A   C   C   A       A       U       C       G       G       G   A   A
A U   G   U   G   G       U       U       A       G       C       C   C   U U     A    A   G   U   C   C   U   C   G   G   A   A UC




                                                                                      RNA
                                                      mRNA                            Polymerase




U A   C   A   C   C   A       A       U       C       G       G       G   A   A   U   U    C
A U   G   U   G   G       U       U       A       G       C       C   C   U U     A   A   G   U   C   C   U   C   G   G   A   A UC




                                                                                                  RNA
                                                      mRNA                                        Polymerase




U A   C   A   C   C   A       A       U       C       G       G       G   A   A   U   U   C   A   G   G
A U   G   U   G   G       U       U       A       G       C       C   C   U U     A   A   G   U   C   C   U   C    G   G   A   A UC




                                                                                                                  RNA
                                                      mRNA                                                        Polymerase




U A   C   A   C   C   A       A       U       C       G       G       G   A   A   U   U   C   A   G   G   A   G    C
A U   G   U   G   G       U       U       A       G       C       C   C   U U     A   A   G   U   C   C   U   C   G   G   A       A UC




                                                                                                                              RNA
                                                      mRNA                                                                    Polymerase




U A   C   A   C   C   A       A       U       C       G       G       G   A   A   U   U   C   A   G   G   A   G   C   C   U   U
A U   G   U   G   G       U       U       A       G       C       C   C   U U     A   A   G   U   C   C   U   C   G   G   A    A UC




                                                                                                                                      RNA
                                                      mRNA                                                                            Polym




U A   C   A   C   C   A       A       U       C       G       G       G   A   A   U   U   C   A   G   G   A   G   C   C   U   U A G
mRNA

Cytoplasm
mRNA
    Cytoplasm
mRNA
    Cytoplasm
mRNA
    Cytoplasm
mRNA
    Cytoplasm
 1.rRNA forms ribosomes
 2.mRNA binds to ribosome and is read
 3.tRNA proof reads mRNA and transfers amino acids
 4.amino acids attached to tRNA bind with peptide bond
 5.ribosmes hit the stop codon and completes the
  protein
ribosome

A U   G   U   G   G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC
Anti codon



  tRNA




  Amino
  acid
ribosome

A U   G    U   G   G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




UAC




Tyrosine
ribosome

A U   G   U     G   G   U   U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




UAC           AC C


      Peptide
      bond



Tyrosine Threonine
ribosome

A U   G   U   G   G   U     U   A   G   C   C   C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




UAC           AC C        AA U


                  Peptide
                  bond



Tyrosine Threonine    Asparagine
ribosome

A U   G   U   G   G   U   U   A    G    C   C     C   U U   A   A   G   U   C   C   U   C   G   G   A   A UC




UAC           AC C        AA U         CG G


                              Peptide
                              bond


Tyrosine Threonine    Asparagine       Arginine
ribosome

A U   G   U   G   G   U   U   A    G    C   C     C    U U   A   A   G   U   C   C   U   C   G   G   A   A UC




UAC           AC C        AA U         CG G            G AA


                                                Peptide
                                                bond


Tyrosine Threonine    Asparagine       Arginine       Glutamic
                                                      acid
ribosome

A U   G   U   G   G   U   U   A    G    C   C     C    U U   A      A      G   U   C   C   U   C   G   G   A   A UC




UAC           AC C        AA U         CG G            G AA          U UC


                                                                 Peptide
                                                                 bond


Tyrosine Threonine    Asparagine       Arginine       Glutamic          Lysine
                                                      acid
ribosome

A U   G   U   G   G   U    U   A   G    C   C     C    U U   A   A   G    U     C       C   U   C   G   G   A   A UC




UAC           AC C        A A U        CG G            G AA      U UC               A G G


                                                                              Peptide
                                                                              bond


Tyrosine Threonine    Asparagine       Arginine       Glutamic       Lysine         Arginine
                                                      acid
ribosome

A U   G   U   G   G   U    U   A   G    C   C     C    U U   A   A   G    U   C    C   U     C       G   G   A   A UC




UAC           AC C        A A U        CG G            G AA      U UC             A G G          A G C


                                                                                           Peptide
                                                                                           bond



Tyrosine Threonine    Asparagine       Arginine       Glutamic       Lysine       Arginine       Senine
                                                      acid
ribosome

A U   G   U   G   G   U    U   A   G    C   C     C    U U   A   A   G    U   C    C   U     C    G   G    A    A UC




UAC           AC C        A A U        CG G            G AA      U UC             A G G          A G C         C U U


                                                                                                          Peptide
                                                                                                          bond



Tyrosine Threonine    Asparagine       Arginine       Glutamic       Lysine       Arginine       Senine        Leucine
                                                      acid
riboso

A U   G   U   G   G   U    U   A   G    C   C     C    U U   A   A   G    U   C    C    U    C    G   G   A   A UC




UAC           AC C        A A U        CG G            G AA      U UC             A G G          A G C        C U U AG


                                                                                                                     Peptide
                                                                                                                     bond



Tyrosine Threonine    Asparagine       Arginine       Glutamic       Lysine       Arginine       Senine       Leucine Senine
                                                      acid



                                                                                       Ribosome hits the stop
                                                                                       codon and amino acids
                                                                                       become a protein
   1.RNA polymerase binds to and unwinds the DNA.

   2.RNA polymerase is sent to promoter region.

   3.RNA polymerase reads the DNA to create mRNA

   4.RNA polymerase reaches the stop codon and releases the mRNA

   5.mRNA leaves nucleus and enters the cytoplasm

   6.rRNA forms ribosomes

   7.mRNA binds to ribosome and is read

   8.tRNA proof reads mRNA and transfers amino acids

   9.amino acids attached to tRNA bind with peptide bond

   10.ribosmes hit the stop codon and completes the protein

More Related Content

Similar to Flip book (20)

Lightning dog dna flipbook
Lightning dog dna flipbookLightning dog dna flipbook
Lightning dog dna flipbook
 
Lightning Dog Flipbook
Lightning Dog FlipbookLightning Dog Flipbook
Lightning Dog Flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Bio flipbook
Bio flipbookBio flipbook
Bio flipbook
 
Transcription flipbook
Transcription flipbookTranscription flipbook
Transcription flipbook
 
FLIP BOOK NOO BEN!!!!!
FLIP BOOK NOO BEN!!!!!FLIP BOOK NOO BEN!!!!!
FLIP BOOK NOO BEN!!!!!
 
Flipbook project
Flipbook projectFlipbook project
Flipbook project
 
Dna flipbook
Dna flipbookDna flipbook
Dna flipbook
 
Dna flipbook
Dna flipbookDna flipbook
Dna flipbook
 
Flip book
Flip  book Flip  book
Flip book
 
NTHB Protein Flipbook
NTHB Protein FlipbookNTHB Protein Flipbook
NTHB Protein Flipbook
 
Translation with jake but still no colton
Translation with jake but still no coltonTranslation with jake but still no colton
Translation with jake but still no colton
 
Flip book
Flip bookFlip book
Flip book
 
Flip book mlck5789375937592739
Flip book mlck5789375937592739Flip book mlck5789375937592739
Flip book mlck5789375937592739
 
NTHB flipbook
NTHB flipbookNTHB flipbook
NTHB flipbook
 

More from punxsyscience

Genetics power point
Genetics power pointGenetics power point
Genetics power pointpunxsyscience
 
Protein synthesis trenton stouffer
Protein synthesis trenton stoufferProtein synthesis trenton stouffer
Protein synthesis trenton stoufferpunxsyscience
 
Protein synthesis project
Protein synthesis projectProtein synthesis project
Protein synthesis projectpunxsyscience
 
Steven detrie protein synthesis model
Steven detrie protein synthesis modelSteven detrie protein synthesis model
Steven detrie protein synthesis modelpunxsyscience
 
Steven detrie protein synthesis model
Steven detrie protein synthesis modelSteven detrie protein synthesis model
Steven detrie protein synthesis modelpunxsyscience
 
alexis vite flip book
alexis vite flip bookalexis vite flip book
alexis vite flip bookpunxsyscience
 
Protein synthesis flipbook @yoloswagginator24
Protein synthesis flipbook @yoloswagginator24Protein synthesis flipbook @yoloswagginator24
Protein synthesis flipbook @yoloswagginator24punxsyscience
 
Josh.godo protein synthesis
Josh.godo protein synthesis Josh.godo protein synthesis
Josh.godo protein synthesis punxsyscience
 
Jimmy Carrier Protein Synthesis
Jimmy Carrier Protein SynthesisJimmy Carrier Protein Synthesis
Jimmy Carrier Protein Synthesispunxsyscience
 
Protein synthesisDevonDubensky
Protein synthesisDevonDubenskyProtein synthesisDevonDubensky
Protein synthesisDevonDubenskypunxsyscience
 

More from punxsyscience (20)

Genetics power point
Genetics power pointGenetics power point
Genetics power point
 
Protein synthesis trenton stouffer
Protein synthesis trenton stoufferProtein synthesis trenton stouffer
Protein synthesis trenton stouffer
 
Presentation1
Presentation1Presentation1
Presentation1
 
Atcheson flip book
Atcheson flip bookAtcheson flip book
Atcheson flip book
 
Protein synthesis
Protein synthesisProtein synthesis
Protein synthesis
 
Protein synthesis
Protein synthesisProtein synthesis
Protein synthesis
 
Protein synthesis project
Protein synthesis projectProtein synthesis project
Protein synthesis project
 
Steven detrie protein synthesis model
Steven detrie protein synthesis modelSteven detrie protein synthesis model
Steven detrie protein synthesis model
 
Steven detrie protein synthesis model
Steven detrie protein synthesis modelSteven detrie protein synthesis model
Steven detrie protein synthesis model
 
alexis vite flip book
alexis vite flip bookalexis vite flip book
alexis vite flip book
 
Dna replicaton byrd
Dna replicaton byrdDna replicaton byrd
Dna replicaton byrd
 
Mine all mine
Mine all mine Mine all mine
Mine all mine
 
RNA_LexiZanaglio
RNA_LexiZanaglioRNA_LexiZanaglio
RNA_LexiZanaglio
 
Protein synthesis flipbook @yoloswagginator24
Protein synthesis flipbook @yoloswagginator24Protein synthesis flipbook @yoloswagginator24
Protein synthesis flipbook @yoloswagginator24
 
Rna bio
Rna bioRna bio
Rna bio
 
Presentation1
Presentation1Presentation1
Presentation1
 
Josh.godo protein synthesis
Josh.godo protein synthesis Josh.godo protein synthesis
Josh.godo protein synthesis
 
Brock flipbook
Brock flipbookBrock flipbook
Brock flipbook
 
Jimmy Carrier Protein Synthesis
Jimmy Carrier Protein SynthesisJimmy Carrier Protein Synthesis
Jimmy Carrier Protein Synthesis
 
Protein synthesisDevonDubensky
Protein synthesisDevonDubenskyProtein synthesisDevonDubensky
Protein synthesisDevonDubensky
 

Flip book

  • 1.
  • 2.
  • 3.  1.RNA polymerase binds to and unwinds the DNA.  2.RNA polymerase is sent to promoter region.  3.RNA polymerase reads the DNA to create mRNA  4.RNA polymerase reaches the stop codon and releases the mRNA  5.mRNA leaves nucleus and enters the cytoplasm
  • 4. DNA strand G C A T G G T T A G C C C T T A A G T C C T C G G A A TC C G T A C C A A T C G G G A A T T C A G G A G C C T T A G G= Guanine The promoter region activates the C= Cytosine DNA T= Thymine A= Adenine
  • 5. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC erase Coding region- reads the single strand and makes a mRNA copy
  • 6. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA Polymerase U A C
  • 7. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA Polymerase U A C A C C
  • 8. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U
  • 9. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G
  • 10. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G G A A
  • 11. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G G A A U U C
  • 12. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G G A A U U C A G G
  • 13. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G G A A U U C A G G A G C
  • 14. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polymerase U A C A C C A A U C G G G A A U U C A G G A G C C U U
  • 15. A U G U G G U U A G C C C U U A A G U C C U C G G A A UC RNA mRNA Polym U A C A C C A A U C G G G A A U U C A G G A G C C U U A G
  • 17. mRNA Cytoplasm
  • 18. mRNA Cytoplasm
  • 19. mRNA Cytoplasm
  • 20. mRNA Cytoplasm
  • 21.  1.rRNA forms ribosomes  2.mRNA binds to ribosome and is read  3.tRNA proof reads mRNA and transfers amino acids  4.amino acids attached to tRNA bind with peptide bond  5.ribosmes hit the stop codon and completes the protein
  • 22. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC
  • 23. Anti codon tRNA Amino acid
  • 24. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC Tyrosine
  • 25. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C Peptide bond Tyrosine Threonine
  • 26. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C AA U Peptide bond Tyrosine Threonine Asparagine
  • 27. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C AA U CG G Peptide bond Tyrosine Threonine Asparagine Arginine
  • 28. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C AA U CG G G AA Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic acid
  • 29. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C AA U CG G G AA U UC Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic Lysine acid
  • 30. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C A A U CG G G AA U UC A G G Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic Lysine Arginine acid
  • 31. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C A A U CG G G AA U UC A G G A G C Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic Lysine Arginine Senine acid
  • 32. ribosome A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C A A U CG G G AA U UC A G G A G C C U U Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic Lysine Arginine Senine Leucine acid
  • 33. riboso A U G U G G U U A G C C C U U A A G U C C U C G G A A UC UAC AC C A A U CG G G AA U UC A G G A G C C U U AG Peptide bond Tyrosine Threonine Asparagine Arginine Glutamic Lysine Arginine Senine Leucine Senine acid Ribosome hits the stop codon and amino acids become a protein
  • 34.
  • 35. 1.RNA polymerase binds to and unwinds the DNA.  2.RNA polymerase is sent to promoter region.  3.RNA polymerase reads the DNA to create mRNA  4.RNA polymerase reaches the stop codon and releases the mRNA  5.mRNA leaves nucleus and enters the cytoplasm  6.rRNA forms ribosomes  7.mRNA binds to ribosome and is read  8.tRNA proof reads mRNA and transfers amino acids  9.amino acids attached to tRNA bind with peptide bond  10.ribosmes hit the stop codon and completes the protein