Top Banner
DNA (Deoxyribonucleic Acid) What is it? Read Chap 13 How does it work ? Read Chap 14 How do we know? Read 13, 14 & class notes
39

DNA (Deoxyribonucleic Acid) What is it? Read Chap 13 Read Chap 13 How does it work? Read Chap 14 Read Chap 14 How do we know? Read 13, 14 & class.

Jan 11, 2016

Download

Documents

Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

DNA(Deoxyribonucleic Acid)

What is it? Read Chap 13

How does it work? Read Chap 14

How do we know? Read 13, 14 & class notes

Page 2: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

The Central DogmaDNA makes PROTEINS and PROTEINS make LIFE

Page 3: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

The Central DogmaDNA makes PROTEINS and PROTEINS make LIFE

But how? At its essence, DNA is a set of instructions

for making proteins. “DNA is a cookbook and the genes are recipes”

Proteins are made from different arrangements of protein building blocks called Amino Acids.

There are 20 different Amino Acids. You get them from your food.

Page 4: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

So how do you change the protein in a tuna fish sandwich into human hemoglobin, hair, enzymes, etc.???

Page 5: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

There’s a little problem here…

Page 6: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Step 1: Transcription Copying the DNA

DNA g mRNA

Page 7: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Transcription: Copying the DNADNAgmRNA

Page 8: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Transcription: Copying the DNADNAgmRNA

COMPARISON OF DNA AND MESSENGER RNA

Page 9: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Transcription: Copying the DNADNAgmRNA

COMPARISON OF DNA AND MESSENGER RNA

DNA mRNA

StructureDoubleHelix

SingleStrand

SugarDeoxyribose

C5 H10 O4

RiboseC5 H10 O5

Bases A,G,C,T A,G,C,UUracil

Page 10: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

How can 4 bases tell you how to make proteins from 20 amino acids???

Law of Parsimony (The simplest answer is often the right answer. Sort of, not always but a lot.)

4 letter alphabet making 1–letter words?

4-letter alphabet making 2-letter words?

A G C T

AA GA CA TA

AG GG CG TG

AC GC CC TC

AT GT CT TT

Page 11: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

mRNA & Codons

The 3-base units of information on mRNA are called codons.

AAU,GCC,CAU,GGG,CGA…………….

Codons “spell out” the names of the specific amino acids to be used in making a specific PROTEIN.

The sequence of bases on DNA or RNA is called, duh,

the “base sequence”

Page 12: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

The Universal Genetic Code is 64 tripletsIt’s a 4-letter alphabet that makes 64 3-letter words

Page 13: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Protein Synthesis (makin’ proteins)So this movie requires another actor… TRANSFER RNA (tRNA)

Page 14: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Transfer RNA (tRNA)

Page 15: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Protein Synthesis

Some terms that you MUST know…

DNA codes or triplets (the genetic code of DNA)

TRANSCRIPTION (of DNA to make mRNA)

mRNA CODONS (3-base information units of mRNA

tRNA ANTICODONS (anticodons pair with codons)

TRANSLATION (tRNA reads mRNA to make a protein)

Page 16: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

OK, so you want to make some protein…

Page 17: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 18: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Hook together AMINO ACIDS

with PEPTIDE BONDS

Page 19: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 20: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Protein Synthesis = Translation(makin’ proteins)

Page 21: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Codons

Page 22: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Transfer RNA (tRNA)“Picks up and transfers the amino acids over to the ribosome and mRNA”

Page 23: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

codon in mRNA

anticodon in tRNA

amino

acid

Fig. 14-7, p.223

tRNA Structure

Page 24: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Protein Synthesis (makin’ proteins)

Page 25: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

“Poly-ribosomes”

Page 26: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Overview

Transcription

Translation

mRNA rRNA tRNA

Mature mRNA transcripts ribosomal subunits mature tRNA

Page 27: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

binding site for mRNA

P (first binding

site for tRNA)

A (second binding

site for tRNA)

initiation

elongation

Amino

Acid

1

Amino

Acid

2

Amino

Acid

1

Amino

Acid

2

a A mature mRNA transcript leaves the

nucleus through a pore in the nuclear

envelope.

c Initiation ends when a large and small ribosomal subunit converge and bind

together.

b Initiation, the first stage of translating mRNA, will start when an

initiator tRNA binds to a small ribosomal subunit.

d The initiator tRNA binds to the

ribosome.

e One of the rRNA molecules

Fig. 14-9a-e, p.224

Page 28: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

f The first tRNA is released

g A third tRNA binds with the next

codon h Steps f and g are repeated

termination

i A STOP codon moves into the area where the

chain is being built.

j The new polypeptide chain is released from

the ribosome.

k The two ribosomal subunits now

separate, also.

Fig. 14-9f-k, p.224

Page 29: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 30: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

and all this requires just 28 molecules…

20

5

2

1

Page 31: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

THE END. TEST NEXT TIME.

Page 32: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Extra slides below.

Disregard the remaining slides…

Page 34: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 35: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 36: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 37: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.
Page 38: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

Hershey

and

Chase

Page 39: DNA (Deoxyribonucleic Acid)  What is it? Read Chap 13 Read Chap 13  How does it work? Read Chap 14 Read Chap 14  How do we know? Read 13, 14 & class.

REPLICATION OF DNA