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Molecular Biology of the Gene Chapter 10 Honors Biology Mrs. Stewart, Rm 806.

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Presentation on theme: "Molecular Biology of the Gene Chapter 10 Honors Biology Mrs. Stewart, Rm 806."— Presentation transcript:

1 Molecular Biology of the Gene Chapter 10 Honors Biology Mrs. Stewart, Rm 806

2 Experiments Showed that DNA is the Genetic Material In 1928, Frederick Griffith reported studies on a species of bacterium. He studied two varieties of a bacterium, a pathogenic strand and a variant, that was harmless In 1928, Frederick Griffith reported studies on a species of bacterium. He studied two varieties of a bacterium, a pathogenic strand and a variant, that was harmless A transformation occurred which means that one strain of bacteria was transformed into another one A transformation occurred which means that one strain of bacteria was transformed into another one

3 Griffith’s Experiment

4 Transformation

5 Oswald Avery, Colin MacLeod, Maclyn McCarty

6 Avery, McCarty, and Macleod Repeated Griffith’s experiment and used the heat-killed bacteria and made a juice or extract from it Repeated Griffith’s experiment and used the heat-killed bacteria and made a juice or extract from it Added enzymes to the juice that would break down lipids, proteins, and carbohydrates, and RNA Added enzymes to the juice that would break down lipids, proteins, and carbohydrates, and RNA Transformation occurred in all of these except when tested using DNA Transformation occurred in all of these except when tested using DNA

7 Avery, M c Carty, and MacLeod’s Experiment

8 Bacteriophage Is a virus that infects a bacterium Is a virus that infects a bacterium Stages of infection Stages of infection –Attachment –Entry or injection –Replication –Assembly –Lysing of the cell

9 Lytic Cycle of Viral Infection

10 Alfred Hershey and Martha Chase Were interested in knowing which part of the virus infected the bacterium Were interested in knowing which part of the virus infected the bacterium They labeled two batches of viruses with radioactive sulfur-35 and phosphorus-32 They labeled two batches of viruses with radioactive sulfur-35 and phosphorus-32 The protein was labeled with S-35 and the DNA core with P-32 The protein was labeled with S-35 and the DNA core with P-32 The viruses’ DNA entered the bacteria, and the protein coat remained outside the bacteria The viruses’ DNA entered the bacteria, and the protein coat remained outside the bacteria

11 Hershey and Chase’s Experiment

12 Watson & Crick Awarded the Nobel Peace Prize for discovering the structure of the DNA molecule Awarded the Nobel Peace Prize for discovering the structure of the DNA molecule Used Rosalind Franklin’s picture of an x-ray diffraction to determine the structure of the DNA molecule Used Rosalind Franklin’s picture of an x-ray diffraction to determine the structure of the DNA molecule Her partner was Maurice Wilkins Her partner was Maurice Wilkins James Watson & Francis Crick

13 Chargaff’s Rule Purines pair with pyrimidines Purines pair with pyrimidines Adenine and Guanine are purines Adenine and Guanine are purines Cytosine and Thymine are pyrimidines Cytosine and Thymine are pyrimidines The purine bases have two carbon rings The purine bases have two carbon rings The pyrimidine bases have one carbon ring The pyrimidine bases have one carbon ring

14 DNA & RNA Structure

15 Types of RNA Messenger RNA (mRNA)-carries genetic information from DNA (copies info from DNA) out of the nucleus into the cytoplasm; 3 letter code is called a codon Messenger RNA (mRNA)-carries genetic information from DNA (copies info from DNA) out of the nucleus into the cytoplasm; 3 letter code is called a codon Transfer RNA (tRNA)-picks up an amino acid and brings it to the ribosome; 3 letter code is called an anticodon Transfer RNA (tRNA)-picks up an amino acid and brings it to the ribosome; 3 letter code is called an anticodon Ribosomal RNA (rRNA)-helps makes ribosomes(site of protein synthesis) Ribosomal RNA (rRNA)-helps makes ribosomes(site of protein synthesis)

16 Nucleotide Building Blocks of Nucleic Acids A Nucleotide is composed of a phosphate group, a 5 carbon sugar and a nitrogenous base A Nucleotide is composed of a phosphate group, a 5 carbon sugar and a nitrogenous base The sides or backbone of the DNA & RNA molecule consists of alternating phosphates and sugars The sides or backbone of the DNA & RNA molecule consists of alternating phosphates and sugars The rungs or steps of the ladder contain the bases The rungs or steps of the ladder contain the bases

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19 DNA Replication The process by which DNA duplicates itself The process by which DNA duplicates itself Unzipping occurs when the hydrogen bonds between the base pairs are broken and the two strands unwind. Each of the separated strands serves as a template for the attachment of complementary bases Unzipping occurs when the hydrogen bonds between the base pairs are broken and the two strands unwind. Each of the separated strands serves as a template for the attachment of complementary bases DNA helicase unzips the original strand DNA helicase unzips the original strand DNA polymerase base pairs free nucleotides to the original strand DNA polymerase base pairs free nucleotides to the original strand DNA ligase ties the strand back together DNA ligase ties the strand back together

20 DNA Replication

21 Transcription RNA Polymerase attaches to special places on the DNA molecule, separates the two strands, and synthesizes a mRNA RNA Polymerase attaches to special places on the DNA molecule, separates the two strands, and synthesizes a mRNA mRNA is complementary to one of the DNA strands mRNA is complementary to one of the DNA strands The base pairing mechanism ensures that mRNA will be a complementary copy of the DNA strand that serves as its template The base pairing mechanism ensures that mRNA will be a complementary copy of the DNA strand that serves as its template

22 Transcription

23 Transcription

24 Translation (Protein Synthesis) The two subunits of the ribosome bind to a molecule of mRNA The two subunits of the ribosome bind to a molecule of mRNA The initiator codon, AUG, binds to the first anticodon of tRNA, signaling the beginning of a polypeptide chain The initiator codon, AUG, binds to the first anticodon of tRNA, signaling the beginning of a polypeptide chain Soon the anticodon of another tRNA binds to the next mRNA codon Soon the anticodon of another tRNA binds to the next mRNA codon This tRNA carries the 2 nd amino acid that will be placed into the chain of the polypeptide This tRNA carries the 2 nd amino acid that will be placed into the chain of the polypeptide

25 Translation Continued A peptide bond (covalent bond) forms between two amino acids A peptide bond (covalent bond) forms between two amino acids This polypeptide chain continues to grow until the ribosome reaches a stop codon of mRNA This polypeptide chain continues to grow until the ribosome reaches a stop codon of mRNA Once here, the new polypeptide and mRNA are released from the ribosome Once here, the new polypeptide and mRNA are released from the ribosome

26 Translation

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28 So proteins are determined by the chain of amino acids that make them up But how do our protein makers know which amino acids to add?

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32 Replication, Transcription, Translation

33 Mutations Any change that occurs in the genetic sequence (nitrogenous bases of DNA0 Any change that occurs in the genetic sequence (nitrogenous bases of DNA0 May occur spontaneously May occur spontaneously May result from overexposure from X- rays, gamma rays or ultra-violet rays May result from overexposure from X- rays, gamma rays or ultra-violet rays May result from pollution in the environment or hormones, preservatives in food May result from pollution in the environment or hormones, preservatives in food

34 Types of Mutations Chromosomal Mutations Chromosomal Mutations Affect the chromosome Affect the chromosome Deletion-some of a gene is removed Deletion-some of a gene is removed Duplication-part of a chromosome is repeated Duplication-part of a chromosome is repeated Translocation- part of one chromosome is broken off & attached to another chromosome Translocation- part of one chromosome is broken off & attached to another chromosome Inversion-when a fragment of the chromosome reattaches in a reversed direction Inversion-when a fragment of the chromosome reattaches in a reversed direction Gene Mutations Gene Mutations Point mutations-occur at a single point in the DNA sequence; one nucleotide and can change an amino acid sequence Point mutations-occur at a single point in the DNA sequence; one nucleotide and can change an amino acid sequence Frameshift Mutation Frameshift Mutation –insertion/substitution of a nucleotide that shifts the entire amino acid sequence and creates a new protein

35 Mutations

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