Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the...

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Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction to RNA 2. Transcription modeling activity

Transcript of Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the...

Page 1: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Thursday, March 31st

Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA

Agenda:1. Introduction to RNA2. Transcription modeling activity

Page 2: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

1. What is base pairing?2. How did it help Watson and Crick model DNA?

Warm-up

Page 3: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Why do we care?

Page 4: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

From genes to proteins

• DNA RNA amino acid protein

TranslationPolymerization

Transcription

Page 5: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

RiboNucleic Acid

Three main differences:• The sugar in RNA is ribose instead of deoxyribose. • RNA is generally single-stranded.• RNA contains uracil in place of thymine.

Page 6: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

DNA RNA

Page 7: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Is the model below DNA or RNA? How do you know?

Page 8: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Three Main Types of RNA

• Messenger RNA (mRNA)• Ribosomal RNA (rRNA)• Transfer RNA (tRNA)

Page 9: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

mRNA

• Carries copies of instructions for assembling proteins from the nucleus to ribosome.

Page 10: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Transcription

• RNA polymerase separates the DNA. It adds nucleotides to make a complementary strand of RNA.

Page 11: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Transcription

• RNA polymerase binds only to regions of DNA known as promoters.

• Promoters are signals in DNA that indicate to the enzyme where to bind to make RNA.

Page 12: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Transcription

Sketch this picture and label the RNA polymerase, DNA, and mRNA

Page 13: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

RNA Editing• DNA contains large sequences

that are not involved in coding for proteins called introns. The sequences that do code are called exons.

• During "editing" the introns are cut out and the exons are spliced together. This new version is called mRNA and is ready to leave the nucleus.

Page 14: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

rRNA

• Ribosomes are made up two parts: protein and rRNA. These are outside the nucleus.

Page 15: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

tRNA

• During protein construction, tRNA brings amino acids to the growing protein.

Page 16: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Sketch this picture and label the tRNA, rRNA, and mRNA

Page 17: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Modeling questionsWhat is produced in transcription?

If the DNA strand is AUTGGGTCAG, what is the complementary DNA strand?

If the DNA strand is TGACCTGCCT What is the complementary RNA strand?

If the DNA analysis of a gene shows 20% adenine bases (A), what would be the percentage of thymine (T)?

Cytosine (C)?Guanine (G)?Uracil (U)?

Page 18: Thursday, March 31 st Objective: Explain and apply laws of heredity and their relationship to the structure and function of DNA Agenda: 1. Introduction.

Exit Ticket

What is the purpose of transcription?

Our DNA contains instructions to build what?

The shape of DNA is a(n) ________.

What does tRNA do?