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Protein Synthesis

DNA. Transcription. Ribosome. mRNA. Translation. Protein (chain of Amino acids). Protein Synthesis. Cell. DNA and Protein Synthesis. DNA contains the genetic information or genes to make proteins Proteins are chains of amino acids linked together

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Protein Synthesis

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  1. DNA Transcription Ribosome mRNA Translation Protein (chain of Amino acids) Protein Synthesis Cell

  2. DNA and Protein Synthesis • DNA contains the genetic information or genesto make proteins • Proteins are chains of amino acidslinked together • These proteins determine the physical traitsof an organism and control cellular functions.

  3. What is a Gene? • A geneis a certain length or piece of DNA on a chromosome • A gene is made of 2 parts: • 1. Exon – the expressed parts of the DNA sequence or part that is used to make a protein • 2. Intron – the intervening, “junk DNA”, not expressed or used • Parts are cut, put together and then used to make RNA and proteins

  4. How to make a Protein… • Step 1: Use DNA to make a messenger RNA molecule - Transcription • Step 2: Decode that messenger RNA to see which amino acids are needed to make a protein – Translation • Flow of Information: • DNA RNAProteins

  5. Protein Synthesis • Step 1: Transcription • DNA unzips • Messenger RNA (or mRNA) is made from DNA using base pairs • RNA is different from DNA: • RNA is single stranded, not double stranded • Instead of deoxyribose, it has ribose • instead of Thymine, it uses Uracil • 3) mRNA carries the genetic code from the nucleus to the ribosome in the cytoplasm

  6. Protein Synthesis: Transcription

  7. Cytoplasm Nuclear pores AAAAAA AAAAAA DNA Transcription RNA RNA Processing G G mRNA Export Nucleus Eukaryotic Transcription

  8. Codons • Codon: is a group of three bases that code for a specific amino acid • ex: AAA = Lysine • The codons code for 20 amino acids • Just like the alphabet has 26 letters to make all • the words we know, the 20 amino acids make • all the different proteins found in living • organisms • The codons are the template for protein synthesis, • which takes place on the ribosomes (rRNA)in the • cytoplasm

  9. DNA and Protein Synthesis – Codons and amino acids Name the Amino Acid: UAU CCG AGU GCA Tyrosine Proline Serine Alanine

  10. Protein Synthesis: Translation • Translation: • In the cytoplasm, mRNA attaches to the rRNA(ribosomal RNA) and starts reading the codons • tRNA(transfer RNA) – carries amino acidsto the ribosome and attaches them together to make a growing protein chain • When protein production is complete, the ribosome releases the protein chain, and the protein folds into a 3D shape

  11. Protein Synthesis: Translation

  12. fMet P A Large subunit E UAC 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Small subunit Translation - Initiation

  13. Polypeptide Arg Met Phe Leu Ser Aminoacyl tRNA Gly P A UCU Ribosome E CCA 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Translation - Elongation

  14. Polypeptide Met Phe Leu Ser Arg Gly P A Ribosome E CCA UCU 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Translation - Elongation Aminoacyl tRNA

  15. Polypeptide Met Phe Leu Ser Arg Gly P A Ribosome E CCA UCU 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Translation - Elongation

  16. Polypeptide Ala Met Phe Leu Ser Arg Aminoacyl tRNA Gly P A CGA Ribosome E CCA UCU 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Translation - Elongation

  17. Polypeptide Met Phe Leu Ser Arg Ala Gly P A Ribosome E CCA UCU CGA 5’ GAG...CU-AUG--UUC--CUU--AGU--GGU--AGA--GCU--GUA--UGA-AT GCA...TAAAAAA 3’ mRNA Translation - Elongation

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