Skip to main content
DNA
The Genetic Material

AP Biology

2006-2007
Scientific History
 The march to understanding that DNA is
the genetic material
T.H. Morgan (1908)
 Frederick Griffith (1928)
 Avery, McCarty & MacLeod (1944)
 Erwin Chargaff (1947)
 Hershey & Chase (1952)
 Watson & Crick (1953)
 Meselson & Stahl (1958)


AP Biology
1908 | 1933

Chromosomes related to phenotype
 T.H. Morgan


working with Drosophila
 fruit flies



associated phenotype with
specific chromosome
 white-eyed male had specific

X chromosome

AP Biology
1908 | 1933

Genes are on chromosomes
 Morgan’s conclusions
genes are on chromosomes
 but is it the protein or the
DNA of the chromosomes
that are the genes?


 initially proteins were thought

to be genetic material…
Why?
What’s so impressive
about proteins?!

AP Biology
The “Transforming Principle”
 Frederick Griffith


Streptococcus pneumonia bacteria
 was working to find cure for pneumonia

harmless live bacteria (“rough”)
mixed with heat-killed pathogenic
bacteria (“smooth”) causes fatal
disease in mice
 a substance passed from dead
bacteria to live bacteria to change
their phenotype



AP Biology

“Transforming Principle”

1928
The “Transforming Principle” mix heat-killed
live pathogenic
strain of bacteria
A.

mice die

live non-pathogenic heat-killed
strain of bacteria
pathogenic bacteria
B.
C.

mice live

mice live

pathogenic &
non-pathogenic
bacteria
D.

mice die

Transformation = change in phenotype
something in heat-killed bacteria could still transmit
AP Biology
disease-causing properties
1944

DNA is the “Transforming Principle”
 Avery, McCarty & MacLeod


purified both DNA & proteins separately from
Streptococcus pneumonia bacteria
 which will transform non-pathogenic bacteria?



injected protein into bacteria
 no effect



injected DNA into bacteria
 transformed harmless bacteria into

virulent bacteria
mice die

AP Biology

What’s the
conclusion?
Avery, McCarty & MacLeod

1944 | ??!!

 Conclusion


first experimental evidence that DNA was the
genetic material

Oswald Avery

AP Biology

Maclyn McCarty

Colin MacLeod
Confirmation of DNA
 Hershey & Chase

1952 | 1969

classic “blender” experiment
 worked with bacteriophage


 viruses that infect bacteria


Why use
Sulfur
vs.
Phosphorus?


AP Biology

grew phage viruses in 2 media,
radioactively labeled with either
 35S in their proteins
 32P in their DNA

infected bacteria with
labeled phages

Hershey
Hershey
& Chase

Protein coat labeled
with 35S

DNA labeled with 32P
T2 bacteriophages
are labeled with
radioactive isotopes
S vs. P
bacteriophages infect
bacterial cells

bacterial cells are agitated
to remove viral protein coats

Which
radioactive
marker is found
inside the cell?
Which molecule
carries viral
genetic info?
AP Biology

S radioactivity
found in the medium
35

P radioactivity found
in the bacterial cells
32
AP Biology
Blender experiment
 Radioactive phage & bacteria in blender
S phage

 35

 radioactive proteins stayed in supernatant
 therefore viral protein did NOT enter bacteria

P phage

 32

 radioactive DNA stayed in pellet
 therefore viral DNA did enter bacteria


Confirmed DNA is “transforming factor”
Taaa-Daaa!

AP Biology
Hershey & Chase

AP Biology

Martha Chase

1952 | 1969

Hershey

Alfred Hershey
Chargaff
 DNA composition: “Chargaff’s rules”
varies from species to species
 all 4 bases not in equal quantity
 bases present in characteristic ratio


 humans:

A = 30.9%
T = 29.4%
G = 19.9%
C = 19.8%

AP Biology

That’s interesting!
What do you notice?

Rules
A = T
C = G

1947
1953 | 1962

Structure of DNA
 Watson & Crick


developed double helix model of DNA
 other leading scientists working on question:

 Rosalind Franklin
 Maurice Wilkins
 Linus Pauling

AP Biology

Franklin

Wilkins

Pauling
1953 article in Nature

Watson and Crick

Watson
AP Biology

Crick
Rosalind Franklin (1920-1958)

AP Biology
But how is DNA copied?
 Replication of DNA


base pairing suggests
that it will allow each
side to serve as a
template for a new
strand

“It has not escaped our notice that the specific pairing we have postulated
immediately suggests a possible copying mechanism for the genetic
AP Biology
material.”
— Watson & Crick
Models of DNA Replication
 Alternative models


become experimental predictions

conservative

P
1

2
AP Biology

Can you design
a nifty experiment
to verify?

semiconservative

dispersive
Semiconservative replication

1958

 Meselson & Stahl




label “parent” nucleotides in DNA strands with
heavy nitrogen = 15N
label new nucleotides with lighter isotope = 14N
“The Most Beautiful Experiment in Biology”

Make predictions…
15

15

N/15N

N parent
strands

AP Biology

parent

replication
Predictions
14

1st round of
replication

2nd round of
replication

15

N/14N
N/15N

15

1

15

N/14N

15

N/14N
N/15N

N/14N
15
N/14N

14

15

N/14N

N/15N

2 N parent
AP Biology
strands
15

N/14N

semiconservative
dispersive
conservative

14

P

15

semiconservative
dispersive
conservative
Meselson & Stahl
Matthew Meselson

Franklin Stahl

Franklin Stahl

Matthew Meselson

AP Biology
Scientific History
 March to understanding that DNA is the genetic material


T.H. Morgan (1908)
 genes are on chromosomes



Frederick Griffith (1928)
 a transforming factor can change phenotype



Avery, McCarty & MacLeod (1944)
 transforming factor is DNA



Erwin Chargaff (1947)
 Chargaff rules: A = T, C = G



Hershey & Chase (1952)
 confirmation that DNA is genetic material



Watson & Crick (1953)
 determined double helix structure of DNA



AP Biology

Meselson & Stahl (1958)
 semi-conservative replication
The “Central Dogma”
 Flow of genetic information in a cell
transcription

DNA

replication
AP Biology

translation

RNA

protein
Science …. Fun
Party Time!
Any Questions??

AP Biology

2006-2007
Ghosts of Lectures Past
(storage)

AP Biology

2006-2007
Semiconservative replication

1958

 Meselson & Stahl




label “parent” nucleotides in DNA strands with
heavy nitrogen = 15N
label new nucleotides with lighter isotope = 14N
“The Most Beautiful Experiment in Biology”
parent

15

15

N/15N

N parent
strands

AP Biology

replication
Semiconservative replication

1958

 Make predictions…
N strands replicated in 14N medium
1st round of replication? where should the bands be?
2nd round?

 15



AP Biology