Title: DNA Quantitation and RealTime PCR
1DNA Quantitation and Real-Time PCR
- Dr. Jason Linville
- University of Alabama at Birmingham
- jglinvil_at_uab.edu
2Quantitation Overview
quantitate tr.v. to determine or measure the
quantity of.
- Why quantitate?
- Methods for quantitation
- Spectrophotometry
- Slot Blot (Quantiblot)
- Microtiter Plate
- Real Time PCR
3DNA Quantitation
- Following DNA extraction, an unknown
concentration of DNA and other substances exist
in the extract.
How much DNA is in the sample?
Why do we care?
4DNA Quantitation
- Quantitation can indicate whether an extraction
was successful, but
Amplification of STRs or mtDNA can be
accomplished on samples containing DNA at a level
below the detection limit of most quantitative
techniques.
5DNA Quantitation
- Main reason for quantitation
Most PCR assays work best when DNA is at a
certain level.
- Too little DNA extract
- Failure to amplify any DNA
- Allele dropout (incomplete amplification)
6DNA Quantitation
- Main reason for quantitation
Most PCR assays work best when DNA is at a
certain level.
- Too much DNA extract
- Amplified STR peaks off scale
- Increase in PCR inhibitors
7DNA Quantitation
- DNA absorbs UV light at 260 nm
- More DNA More absorbance
- Not specific to human DNA
8DNA Quantitation
- DNA separated on agarose gel
- Stained with ethidium bromide (requires double
stranded DNA) - Not specific to human DNA
9DNA Quantitation
- Picogreen is interchelating dye.
- Binds between base pairs in double stranded DNA,
enhancing fluorescence. - Fluorescence related to amount of DNA in solution.
10DNA Quantitation
11DNA Quantitation
- DNA captured on membrane.
- Labeled probe bound to DNA
- Intensity of label related to quantity of DNA.
12DNA Quantitation
13DNA Quantitation
- Capturing DNA on membrane
- DNA mixed with spotting solution to give the
sample color - Biodyne Membrane prewet. Ready to bind DNA.
- DNA/spotting solution applied to membrane using
slot blot apparatus.
14DNA Quantitation
- 5-biotin-TAGAAGCATTCTCAGAAACTACTTTGTGATGATTGCATTC
-3 - Probe only binds to human DNA (chromosome 17)
- Biotin has high affinity for many proteins,
including Streptavidin.
15DNA Quantitation
- Horseradish peroxidase-streptavidin complex added
- Streptavidin binds biotin (probe)
- Horseradish peroxidase will play part in color
changing reaction
16DNA Quantitation
- TMB will change color where HRP is
- Color intensity relates to the amount of HRP,
which relates to the amount of DNA
17Real Time PCR
- Dr. Jason Linville
- University of Alabama at Birmingham
- jglinvil_at_uab.edu
18Summary
- Chemistry
- What are the reaction components?
Instrumentation What amps and detects?
Quantitation Applications Forensics
19Chemistries
- Generic
- Dyes bind to dsDNA
- Includes intercalating dyes
- Non-specific
- Strand-specific (Quantifiler)
- Binds only to sequence being amplified
20Real Time PCR
- Type of generic reaction SYBR green
non-specifically binds all dsDNA
- Increased fluorescence when bound to DNA
- More double stranded DNA more binding more
fluorescence
21Real Time PCR
- Fluorescence measures amount of amplicon during
PCR
- Forensically, can be used to calculate how much
DNA was present before reaction.
- Quant method very similar to strand specific
binding (later)
22Real Time PCR
- Strand-Specific Detection
- Fluorescent labeled probe (sequence specific)
binds to DNA - More PCR product more sequence for probe to
bind with - Only fluoresces during/after it is bound
(different mechanisms)
23Real Time PCR
- Strand-Specific Detection (Mechanisms)
Unimportant Dual hybridisation, molecular
beacon, hybeacons, etc. Important 5 Nuclease
Activity
5 Nuclease Activity based probes will fluoresce
after binding when the 5 end is cleaved by Taq
polymerase.
24Real Time PCR
Reporter (FAM)
Quencher (TAMRA)
R
Q
Probe
Why doesnt the probe fluoresce when unbound?
25No blue fluorescence when unbound
Dye FAM
In case of TAMRA, decays by fluorescing at a
different ?
Q TAMRA
26Real Time PCR
Reporter (FAM)
Energy transfer
Quencher (TAMRA)
R
Q
Probe
488nm
Why doesnt the probe fluoresce when unbound?
27Real Time PCR
Reporter (FAM)
Quencher (TAMRA)
R
Q
Probe
Why does the probe fluoresce when bound?
28Blue fluorescence when bound/cleaved
Real Time PCR
Dye physically separated from Quencher
Dye FAM
Q TAMRA
Allowed to fluoresce
29Taqman
- Taqman describes technology of probe using
Reporter/Quencher
30Taqman
- Probe binds DNA during cool down before primers.
31Taqman
- Reporter is cleaved from probe. Fluoresces
32Taqman
- Reporter is cleaved from probe. Fluoresces
33Real Time PCR
Reporter (FAM)
Blue light detected
R
Quencher (TAMRA)
Q
488nm
Probe
Why does the probe fluoresce when bound?
34Real Time PCR
- Strand-Specific Detection (Probes)
- Probe should bind before primers
- Tm should be 5ºC higher than primers
- Probe usually 20-30 bp long
35Instrumentation
- Real Time thermal cyclers have capability to
excite fluorophore and detect emitted light.
- Many manufacturers make real-time PCR thermal
cyclers.
- Forensics currently dominated by Applied
Biosystems 7000 and 7900HT.
36ABI 7900HT is high throughput.
37Instrumentation
Laser Argon ion, 488nm Detector CCD camera
(500 - 660nm)
Uses 96 and 384 plates
38Real Time PCR
- Quantifiler and Quantifiler Y
Designed for Quantitation of human DNA or human
male DNA
39Quantifiler Human
Primer 1
R
Q
dNTPs
Probe
Primer 2
Tris Buffer
MgCl2
Known amount DNA
Taq Polymerase
PCR Components
Internal PCR Control (IPC)
R
Q
Primer 1
Probe
Primer 2
Primers Human Telomerase Transcriptase gene
Taqman Probe Human Telomerase Transcriptase gene
40Quantifiler Y Human Male
Primer 1
R
Q
dNTPs
Probe
Primer 2
Tris Buffer
MgCl2
Known amount DNA
Taq Polymerase
PCR Components
Internal PCR Control (IPC)
R
Q
Primer 1
Probe
Primer 2
Primers SRY gene
Taqman Probe SRY gene gene
41Real Time PCR gt Quantifiler
42Real Time PCR gt Quantifiler
43Real Time PCR gt Quantifiler
44Real Time PCR gt Quantifiler
- X 100,000 copies
- ? 1000 copies
45Threshold too high
- Standard curve uses the cycle number where
fluorescence crosses threshold. - Threshold should be set as low as possible
accuracy higher for early measurements
46Threshold good
- Standard curve uses the cycle number where
fluorescence crosses threshold. - Threshold should be set as low as possible
accuracy higher for early measurements
47- X 100,000 copies
- ? 1000 copies
48 49- If it crossed at 15 about 7E05 copies of DNA in
extract.
50Quantitation
- Can also be reported in amount of DNA (ng/uL like
Quantiblot) - Since it is detecting viable sequence, amount of
DNA will decrease with degradation
51 Web Animation
- http//www.vetscite.org/issue1/tools/leute_2_0800.
htm