PCR Flashcards

1
Q

What is PCR?

A
  • An enzymatic assay which allows for the amplification of specific genes from a DNA sample
  • one of the key mapping techniques used in the Human Genome Project
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2
Q

Explain the PCR process

A
  • utilises short DNA sequences aka oligonucleotide primers, sequence = complimentary to target region of genes
    -1.DNA sample is denatured to produce single stranded DNA aka, template DNA
  • Oligonucleotide primers can bind (primer annealing)
  • DNA polymerase then adds nucleotide bases to the end of each primer, using the template DNA as a guide to extend the primer, therby producing new double stranded DNA
  • This process= repeated for a number of cycles to amplify the desired genes targeted by the oligonucleotide primers
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3
Q
A
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4
Q

What is the exponential amplification of genes?

A
  • Each PCR cycle creates 2 new double stranded DNAs from each DNA molecule present
  • The amount of DNA doubles with every cycle of PCR
  • After 2 cycles, the conc of DNA increases by 2^2 fold
  • After N cycles, PCR generates a 2N fold increase in the target DNA
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5
Q

What is the DNA template?

A
  • the sample DNA that contains the sequence
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6
Q

What is Taq DNA polymerase?

A
  • enzyme that synthesises new strands of DNA complementary to the target sequence
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7
Q

What are primers?

A
  • short pieces of single stranded DNA that are complementary to the target sequence
  • the polymerase begins synthesising new DNA from the end of the primer
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8
Q

What are nucleotides (dNTPs/ deoxynucleotide triphosphates)

A
  • single units of the bases A,T ,G and C = building blocks for new DNA strands
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9
Q

What is the role of MgCl2 in PCR?

A
  • cofactor for activity of DNA polymerases
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10
Q

What is a buffer’s role in PCR?

A
  • provides a suitable chemical environment for activity of DNA polymerase
    • sterile, nuclease free water
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11
Q

What is PCR reaction?

A
  • performed in a thermalcycler and involves an initial DNA denaturation, followed by a number of cycles of denaturation, primer annelaing and product extension
  • A final DNA extension step completes the reaction
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12
Q

How to visualise PCR results?

A
  • After thermal cycling, tubes are taken out of the PCR machine
  • contents of tubes are loaded onto an agarose gel
  • DNA is separated by size using an electirc field
  • DNA is then stained
  • PCR products are visible as differnet bands
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13
Q

What are the advantages of PCR?

A
  • Highly sensitive technique
  • potential to produce millions to billions of copies of a specific product for sequencing, cloning and analysis
  • can be used to test for anti-microbial resistance
  • can be quickly performed in 4-8 hours
  • can detect less common organisms such as viruses
  • quantitative polymerase chain reaction and is used in COVID-19 testing
  • method also adds fluorescent dyes to the PCR process to measure the amount of genetic material in a sample
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14
Q

What are the limitations of PCR?

A
  • Highly sensitive technique
  • any contamination of the sample by small amounts of DNA can produce misleading results
  • Primers used for PCR can anneal non-specifically to sequences that are similar but not identical to target DNA
  • Incorrect nucelotides can be incorporated into the PCR sequence by the DNA polymerase
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