DNA Replication

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Catatan pelajaran

Semi-Conservative Replication

  • DNA replication is semi-conservative: each new DNA molecule contains one original (parent) strand and one newly synthesised strand.
  • The original strand is called the template strand; the new strand is built from free nucleotides by complementary base pairing.
  • Base pairing rules: adenine pairs with thymine, and cytosine pairs with guanine.
  • Hydrogen bonds form only between correctly paired bases on the template and new strands.
  • Replication occurs in the nucleus and is important for growth, replacement of old/damaged cells, and reproduction.
  • Crick and Watson proposed the semi-conservative model; Meselson and Stahl later provided experimental evidence.

The Role of Helicase and DNA Polymerase

  • Helicase unwinds the DNA double helix and breaks the hydrogen bonds between base pairs, exposing bases on each strand.
  • Each single strand acts as a template for the formation of a new strand.
  • DNA polymerase links nucleotides together to form a new strand, using the pre-existing strand as a template.
  • DNA polymerase catalyses condensation reactions between the deoxyribose sugar and phosphate groups of adjacent nucleotides, forming the sugar-phosphate backbone.
  • DNA polymerase always builds the new strand in the 5' to 3' direction, attaching to the 3' end of the template strand and reading it in a 3' to 5' direction.

Directionality and Strand Synthesis

  • DNA polymerase only works in a 5' to 3' direction, adding nucleotides to the 3' end of a growing strand.
  • The 5' phosphate group of an incoming nucleotide bonds to the free 3'-OH group on the growing strand.
  • Double-stranded DNA consists of two antiparallel strands: one runs 5' to 3', the other 3' to 5'.
  • The leading strand is synthesised continuously, following the replication fork as it opens.
  • The lagging strand is synthesised discontinuously in short fragments called Okazaki fragments, away from the fork.
  • Okazaki fragments are later joined together by DNA ligase to form a continuous strand.

Enzymes in DNA Replication

  • Helicase unwinds the double helix and breaks hydrogen bonds between strands at the replication fork.
  • Single-stranded binding proteins keep the separated strands apart while the template is copied.
  • DNA primase generates a short RNA primer on the template strands, providing an initiation point for DNA polymerase III.
  • DNA polymerase III starts replication next to the RNA primer, linking nucleotides in a 5' to 3' direction.
  • DNA polymerase I removes the RNA primers and replaces them with DNA.
  • DNA ligase joins Okazaki fragments by catalysing the formation of sugar-phosphate bonds.
  • An RNA primer is needed once on the leading strand but several times on the lagging strand to initiate each fragment.

Proofreading and Accuracy

  • Each human cell replication requires synthesis of about 3 billion new base pairs.
  • Mistakes during replication are called mutations and can be harmful, leading to diseases such as cancer.
  • In prokaryotes, DNA polymerase III acts as a proof-reader of the new daughter strand.
  • It recognises incorrect nucleotides, reverses direction to remove the incorrect nucleotide from the 3' end, then inserts the correct one and continues replication.
  • Semi-conservative replication ensures genetic continuity with high accuracy between generations of cells.

Gel Electrophoresis

  • Gel electrophoresis separates DNA, RNA, and proteins according to their size (mass) and net charge.
  • DNA is negatively charged due to its phosphate groups, so it moves towards the anode (positive pole).
  • Smaller molecules move faster and further through the gel pores; larger molecules move more slowly.
  • Agarose gel is used for DNA; polyacrylamide gel is used for proteins.
  • Method: create an agarose gel plate with wells, submerge it in electrolyte solution, load DNA fragments into wells, and apply an electric current.
  • The negative electrode must be connected to the end with the wells so DNA fragments move towards the anode.
  • Fragments are visualised using radioactive labels (X-ray film) or fluorescent stains (UV light).

Polymerase Chain Reaction (PCR)

  • PCR is an in vitro method of DNA amplification used to produce large quantities of specific DNA or RNA fragments from very small samples.
  • Requirements: target DNA/RNA, DNA polymerase (commonly Taq polymerase), free nucleotides, buffer solution, and primer sequences.
  • Taq polymerase comes from the thermophilic bacterium×Thermus aquaticus×and does not denature at high temperatures.
  • PCR occurs in a thermal cycler and involves three stages per cycle.
  • Denaturation: heated to 95°C to break hydrogen bonds between DNA strands.
  • Annealing: cooled to 50–60°C so primers bind to the single strands.
  • Elongation/Extension: heated to 72°C for Taq polymerase to build complementary strands.
  • Each cycle doubles the DNA; 30 cycles can generate over 1 billion copies by exponential amplification.

DNA Profiling and Its Applications

  • DNA profiling (genetic fingerprinting) identifies suspects, victims, and ancestry relationships.
  • The regions analysed are VNTRs (Variable Number Tandem Repeats): short, non-coding repeating DNA sequences 20–50 bases long.
  • Every person (except identical twins) has a unique combination of VNTRs.
  • Steps: DNA extraction, PCR amplification, cutting with restriction endonucleases, gel electrophoresis, adding probes, and visualisation.
  • In paternity testing, a parent shares about 50% of the offspring's bands; any band in the child must be present in the mother or father.
  • In forensics, samples from a crime scene are compared to suspects, victims, and control samples; care must be taken to avoid contamination.
  • Reliability is increased by using more VNTR markers, reducing the chance of a false match.

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Soal latihan

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  1. 1.Which of the following correctly describes the role of DNA polymerase in DNA replication?

    Easy
    • AForms hydrogen bonds between the bases of the new nucleotides and the template strand.
    • BUnwinds the DNA double helix at the replication fork.
    • CCovalently bonds new DNA nucleotides together.
    • DJoins up the Okazaki fragments on the lagging strand.
  2. 2.To which part of the DNA molecule will new nucleotides be covalently bonded during DNA replication?

    Easy
    • ANitrogenous base
    • B5’ phosphate group of a pentose sugar
    • C1’ carbon of a pentose sugar
    • D3’ -OH group of a pentose sugar
  3. 3.In gel electrophoresis, DNA moves towards the _________.

    Easy
    • ACathode
    • BNegatively charged electrode
    • CAnode
    • DTiny pores in the gel
  4. 4.Which of the following processes takes place in a thermal cycler?

    Easy
    • AGenetic modification
    • BPolymerase chain reaction
    • CGel electrophoresis
    • DGenetic fingerprinting
  5. 5.Which of the following statements about semi-conservative replication of DNA are correct? (select all that apply)

    Medium
    • ADNA polymerase always builds a new strand of DNA in the 3′ to 5′ direction.
    • BThe action of DNA polymerase is followed by that of helicase.
    • COne strand of original DNA remains in each daughter molecule; the other strand has been made from free nucleotides.
    • DCrick and Watson proposed the hypothesis of semi-conservative replication, whereas experimental evidence was later provided by Meselson and Stahl.
  6. 6.During the process of semi-conservative replication of DNA, which activity relating to bonding does not take place?

    Medium
    • ABreaking of hydrogen bonds.
    • BDNA polymerase forms an enzyme-substrate complex with free nucleotides.
    • CFormation of new covalent bonds between nucleotides.
    • DFormation of new glycosidic bonds between deoxyribose molecules.
  7. 7.Which of the following are necessary for successfully conducting PCR in a forensic examination at a crime scene? (select all that apply)

    Medium
    • AAn active sample of human DNA or RNA polymerase
    • BBuffer solution
    • CA sample of target DNA or RNA
    • DFree nucleotides
    • EPrimer sequences
  8. 8.Okazaki fragments are short sections of DNA formed during DNA replication. Which of the following statements correctly describes why they form?

    Easy
    • ATo help the DNA helix unwind
    • BTo enable replication of the leading strand
    • CTo act as a template for DNA polymerase
    • DTo enable replication of the lagging strand

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